DISC1 regulates new neuron development in the adult brain via modulation of AKT-mTOR signaling through KIAA1212.
- Authors
- Kim, Ju Young; Duan, Xin; Liu, Cindy Y; Jang, Mi-Hyeon; Guo, Junjie U; Pow-anpongkul, Nattapol; Kang, Eunchai; Song, Hongjun; Ming, Guo-li
- Year
- 2009
- Journal
- Neuron
- PMID
- 19778506
- DOI
- 10.1016/j.neuron.2009.08.008
- PMCID
- PMC3075620
Disrupted-in-schizophrenia 1 (DISC1), a susceptibility gene for major mental illnesses, regulates multiple aspects of embryonic and adult neurogenesis. Here, we show that DISC1 suppression in newborn neurons of the adult hippocampus leads to overactivated signaling of AKT, another schizophrenia susceptibility gene. Mechanistically, DISC1 directly interacts with KIAA1212, an AKT binding partner that enhances AKT signaling in the absence of DISC1, and DISC1 binding to KIAA1212 prevents AKT activation in vitro. Functionally, multiple genetic manipulations to enhance AKT signaling in adult-born neurons in vivo exhibit similar defects as DISC1 suppression in neuronal development that can be rescued by pharmacological inhibition of mammalian target of rapamycin (mTOR), an AKT downstream effector. Our study identifies the AKT-mTOR signaling pathway as a critical DISC1 target in regulating neuronal development and provides a framework for understanding how multiple susceptibility genes may functionally converge onto a common pathway in contributing to the etiology of certain psychiatric disorders.
Over-activation of AKT signaling in newborn neurons with DISC1 knockdown in the adult brain(A) Sample confocal images of immunostainining for GFP, phosphorylated AKT (pAKT), an immature neuronal marker DCX, and DAPI. Retroviruses co-expressing GFP and DISC1-shRNA, or a control-shRNA, were used to infect proliferating neural progenitors in the adult brain. GFP+ neurons were examined at 14 days post-viral injection. Scale bar: 25 ΞΌm.(B) A summary of quantifications of pAKT levels in the cytosol of GFP+DCX+ immature neurons at different stages of development in the adult brain. The pAKT fluorescence intensity of individual GFP+DCX+ new neuron was first normalized to the GFP-DCX+ immature new neurons in the same image. Values represent mean Β± SEM (n = 10-33 cells from at least four animals; *: P < 0.01, ANOVA)(C and D) Same as in (A and B), except that phosphorylated S6 (pS6) was examined.
Direct interaction between DISC1 and KIAA1212(A and B) Association of DISC1 and KIAA1212 in hippocampal neurons. Lysates from primary hippocampal neurons in culture (A) and acutely dissected hippocampal tissues (B) were subjected to co-IP using antibodies against DISC1 or KIAA1212 (KIAA), or using control antibodies, followed by Western Blot analysis.(C and D) Mapping of KIAA1212 domains involved in direct association with DISC1. Shown in (C) is a schematic diagram of different domains and regions of KIAA1212 used to generate GST-tagged recombinant fragments. Shown in (D) is a sample Western Blot of the in vitro pull-down of recombinant His-tagged DISC1 by different recombinant GST-KIAA1212 fragments.(E) Direct association between DISC1 and the CT2 domain of KIAA1212. A fixed amount of 6xHis-DISC1 was mixed with various amount of GST-CT2. Amounts of bound and free DISC1 were quantified. The percentage of bound DISC1 was plotted against the concentration of CT2 and Kd value was calculated by the Scatchard analysis.
Modulation of AKT signaling by DISC1 through KIAA1212(A) Western Blot analysis of AKT and S6 signaling. HEK293 cells transfected with expression vectors for HA-KIAA1212, myc-DISC1, or co-transfected with both, were serum starved overnight and then treated with insulin (100 nM) or saline for 15 mins. Cell lysates were subjected to Western Blot analysis for phosphorylated and total endogenous AKT, phosphorylated and total endogenous S6, myc-DISC1 (DISC1) and HA-KIAA1212 (KIAA), respectively. Shown are sample blots and summaries of quantifications of the levels of AKT and S6 phosphorylation. For each condition, a value was first obtained for the ratio of phosphorylated over total amount of AKT or S6, which was then normalized to those without overexpression and insulin treatment for each individual experiment. Values represent mean Β± SEM (n = 5 experiments; *: P < 0.01, ANOVA).(B) Inhibition of association between KIAA1212 and AKT by DISC1. HEK293 cells were transfected with expression constructs for HA-KIAA1212, or for both HA-KIAA1212 and myc-DISC1. Cultures were serum starved overnight and then treated with insulin (100 nM) or saline for 15 mins. Cell lysates were subjected to co-IP using antibodies against HA and followed by immunoblotting for AKT, or vice versa.(C) Association between KIAA1212 and DISC1. Similar as (A), HEK293 cells were co-transfected with expression constructs for HA-KIAA1212 and DISC1. Cell lysates were subjected to co-IP using antibodies against HA and followed by immunoblotting for DISC1, or vice versa.(D) Lack of strong association between DISC1 and AKT. Similar as in (A), HEK293 cells were transfected with expression constructs for DISC1, or for both DISC1 and KIAA1212. Cell lysates were subjected to co-IP using antibodies against AKT and followed by immunoblotting for DISC1, or vice versa.
Role of KIAA1212 and AKT signaling in regulating morphogenesis and positioning of newborn neurons in the adult brain(A to C) Morphogenesis of new neurons in the adult brain. Engineered retroviruses were used for birth-dating, lineage tracing with GFP expression, and genetic manipulation with expression of the transgene or shRNA. Two different control viruses, control-shRNA and pCUXIE (vector for transgene expression), were used for comparison of expression of shRNAs and transgenes, respectively. GFP+ neurons were examined at 14 dpi. Shown in (A) are sample single section confocal images of GFP+ and DAPI under different manipulations. Scale bar: 25 ΞΌm. Also shown are summaries of the soma size (B) and number of primary dendrites (C) of GFP+ neurons under different conditions. Numbers associated with each bar graph indicate the number of neurons examined from at least four animals under each condition. Values represent mean Β± SEM (*: P < 0.01, ANOVA).(D and E) Positioning of newborn neurons in the dentate gyrus of the adult hippocampus. Shown in (D) is a schematic diagram of four areas defined for the dentate gyrus region. GL: granule cell layer; area 1: inner granule cell layer; area 2: middle granule cell layer; area 3: outer granule cell layer; ML: molecular layer (area 4). Shown in (E) is a summary of the percentile distribution of GFP+ neuron cell body within each domain as defined in (D). The same groups of GFP+ neurons as in (B) and (C) were used for quantifications.
Role of KIAA1212 and AKT signaling in regulating dendritic development of newborn neurons in the adult brain(A) Sample projected confocal images of GFP+ new neurons in the adult brain. Same as in Figure 4, GFP+ neurons with retrovirus-mediated genetic manipulation were examined at 14 dpi. Scale bar: 50 ΞΌm.(B) A summary of total dendritic length of GFP+ neurons at 14 dpi under different conditions. Shown is the cumulative plot with each symbol representing data from an individual GFP+ neuron from at least four animals for each condition. (*: P < 0.01, Kolmogorov-Smirnov test)(C) Analysis of dendritic complexity of GFP+ neurons using the Sholl analysis. The same sets of GFP+ neurons as in (B) were used. Values represent mean Β± SEM (*: P < 0.01, student t-test)
Effects of pharmacological inhibition of mTOR on DISC1-dependent regulation of development of newborn neurons in the adult brain(A) A schematic diagram of experimental design. Rapamycin (20 mg/kg body weight) or vehicle was i.p. injected.(B) Quantification of pS6 levels in GFP+ neurons under different experimental conditions. Similar to Figure 1C, the pS6 fluorescence intensity of individual GFP+DCX+ new neuron was normalized to the GFP-DCX+ immature new neurons in the same image. Values represent mean Β± SEM (n = 42-49 cells from at least four animals; *: P < 0.01, ANOVA).(C-G) Development of new neurons in the dentate gyrus of the adult hippocampus. GFP+ neurons were examined at 14 dpi. Shown are summaries of the soma size (C) and number of primary dendrites (D), neuronal positioning (E), total dendritic length (F) and Sholl analysis (G) of GFP+ neurons under different conditions. Numbers associated with bar graph (in C) indicate the number of neurons examined from at least four animals under each condition. Values represent mean Β± SEM (*: P <0.01, ANOVA).
| # | Section | Preview |
|---|---|---|
| 40 | EXPERIMENTAL PROCEDURES β In vivo birth-dating, genetic manipulation of neural progenitors with engineered retroviruses and pharmacological treatments | Engineered self-inactivating murine oncoretroviruses were used to co-express shRNA under the U6β¦ |
| 41 | EXPERIMENTAL PROCEDURES β In vivo birth-dating, genetic manipulation of neural progenitors with engineered retroviruses and pharmacological treatments | Adult female C57BL/6 mice (7-8 weeks old) housed under standard conditions were anaesthetized andβ¦ |
| 42 | EXPERIMENTAL PROCEDURES β In vivo birth-dating, genetic manipulation of neural progenitors with engineered retroviruses and pharmacological treatments | For pharmacological treatments, rapamycin (LC Laboratories) was first dissolved in ethanol at aβ¦ |
| 43 | EXPERIMENTAL PROCEDURES β Immunohistology, in situ hybridization, confocal imaging and analysis | Coronal brain sections (40-ΞΌm thick) were prepared from injected mice and processed forβ¦ |
| 44 | EXPERIMENTAL PROCEDURES β Immunohistology, in situ hybridization, confocal imaging and analysis | For analysis of cell morphology, Z-series stacks of confocal images were taken and a single confocalβ¦ |
| 45 | EXPERIMENTAL PROCEDURES β Immunohistology, in situ hybridization, confocal imaging and analysis | For analysis of dendritic development, 3D reconstruction of entire dendritic processes of each GFP+β¦ |
| 46 | EXPERIMENTAL PROCEDURES β Immunohistology, in situ hybridization, confocal imaging and analysis | For analysis of cell proliferation in the dentate gyrus, adult mice at the end of 14 day treatmentβ¦ |
| 47 | EXPERIMENTAL PROCEDURES β Immunohistology, in situ hybridization, confocal imaging and analysis | For in situ hybridization analysis, brains were fixed with 4% paraformaldehyde and 20 ΞΌm thickβ¦ |
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| Title | Authors | Journal | Year | Link |
|---|---|---|---|---|
| Dual phosphorylation of DISC1 at Ser58 and Ser713 regulates polarization of cortical neurons via GSK3Ξ². | Ren J et al. | β | 2026 | β |
| Elevated calneuron-1, an accessory subunit of muscarinic receptors, induces frontotemporal dysconnectivity and schizophrenia-like deficits. | Oelschlegel AM et al. | β | 2026 | β |
| Single-cell analysis reveals neuroprotective histone deacetylase inhibitor pathways. | Peyton M et al. | β | 2026 | β |
| DISC1 Protects Against Zika Virus Infection and Long-Term Neurological Damage Through AMPK-mTOR-Mediated Autophagy. | Zhang S et al. | β | 2025 | β |
| Diversification of dentate gyrus granule cell subtypes is regulated by Nrg1 nuclear back-signaling. | Rajebhosale P et al. | β | 2025 | β |
| Genome sequencing reveals CCDC88A variants in malformations of cortical development and immune dysfunction. | Lehtonen J et al. | β | 2025 | β |
| Neuroglial Advances: New Roles for Established Players. | Verkhratsky A et al. | β | 2025 | β |
| A rare cause of epileptic encephalopathy: case report of a novel patient with PEHO-like phenotype and CCDC88A gene pathogenic variants. | Papuc SM et al. | β | 2024 | β |
| Defined co-cultures of glutamatergic and GABAergic neurons with a mutation in DISC1 reveal aberrant phenotypes in GABAergic neurons. | Heider J et al. | β | 2024 | β |
| Early Postnatal Exposure to Midazolam Causes Lasting Histological and Neurobehavioral Deficits via Activation of the mTOR Pathway. | Xu J et al. | β | 2024 | β |
| Genetics of human brain development. | Zhou Y et al. | β | 2024 | β |
| Haploinsufficiency of ZFHX3, encoding a key player in neuronal development, causes syndromic intellectual disability. | PΓ©rez Baca MDR et al. | β | 2024 | β |
| Insights into the mechanism of transcription factors in Pb<sup>2+</sup>-induced apoptosis. | Guo J et al. | β | 2024 | β |
| Mitochondrial metabolism in neural stem cells and implications for neurodevelopmental and neurodegenerative diseases. | Garone C et al. | β | 2024 | β |
| PI3K-AKT/mTOR Signaling in Psychiatric Disorders: A Valuable Target to Stimulate or Suppress? | Chen Y et al. | β | 2024 | β |
| SRSF10 regulates migration of neural progenitor cells and granule cells and affects the formation of dentate gyrus during the development of mouse hippocampus. | Ma A et al. | β | 2024 | β |
| Thioctic acid shield against lipopolysaccharide depression and endoplasmic reticulum stress: GR7M/Homer/ATF6 signaling. | Kadry MO et al. | β | 2024 | β |
| Ziprasidone triggers inflammasome signaling via PI3K-Akt-mTOR pathway to promote atrial fibrillation. | Lu MK et al. | β | 2024 | β |
| A computational biology approach to identify potential protein biomarkers and drug targets for sporadic amyotrophic lateral sclerosis. | Kumar R et al. | β | 2023 | β |
| Co-Aggregation and Parallel Aggregation of Specific Proteins in Major Mental Illness. | SamardΕΎija B et al. | β | 2023 | β |
| Evidence of DISC1 as an arsenic binding protein and implications regarding its role as a translational activator. | Watanabe M et al. | β | 2023 | β |
| Integrative Roles of Dopamine Pathway and Calcium Channels Reveal a Link between Schizophrenia and Opioid Use Disorder. | Thiagarajan SK et al. | β | 2023 | β |
| Molecular mediators of angiogenesis and neurogenesis after ischemic stroke. | Paro MR et al. | β | 2023 | β |
| Adult neural stem cells and schizophrenia. | Hu L et al. | β | 2022 | β |
| Depolarization of astrocytes in the basolateral amygdala restores WFS1 neuronal activity and rescues impaired risk-avoidance behavior in <i>DISC1<sup>TM</sup></i> mice | Zhou X et al. | β | 2022 | β |
| Methylation pattern and mRNA expression of synapse-relevant genes in the MAM model of schizophrenia in the time-course of adolescence. | Khan AQ et al. | β | 2022 | β |
| Neuronal Glypican4 promotes mossy fiber sprouting through the mTOR pathway after pilocarpine-induced status epilepticus in mice. | Ma KG et al. | β | 2022 | β |
| Pathological oligodendrocyte precursor cells revealed in human schizophrenic brains and trigger schizophrenia-like behaviors and synaptic defects in genetic animal model. | Yu G et al. | β | 2022 | β |
| Protein Misfolding and Aggregation in the Brain: Common Pathogenetic Pathways in Neurodegenerative and Mental Disorders. | Ochneva A et al. | β | 2022 | β |
| Quantification of a Neurological Protein in a Single Cell Without Amplification. | Lee D et al. | β | 2022 | β |
| Regulation of sensorimotor gating via Disc1/Huntingtin-mediated Bdnf transport in the cortico-striatal circuit. | Jaaro-Peled H et al. | β | 2022 | β |
| Research Progress on Natural Compounds Exerting an Antidepressant Effect through Anti-inflammatory. | Yuan C et al. | β | 2022 | β |
| The D2R-DISC1 protein complex and associated proteins are altered in schizophrenia and normalized with antipsychotic treatment. | Wang J et al. | β | 2022 | β |
| The mechanism of Girdin in degenerative brain disease caused by high glucose stimulation. | Liu L et al. | β | 2022 | β |
| Adult Neural Stem Cell Regulation by Small Non-coding RNAs: Physiological Significance and Pathological Implications. | Penning A et al. | β | 2021 | β |
| A human forebrain organoid model of fragile X syndrome exhibits altered neurogenesis and highlights new treatment strategies. | Kang Y et al. | β | 2021 | β |
| IGF1-Stimulated Posttraumatic Hippocampal Remodeling Is Not Dependent on mTOR. | Littlejohn EL et al. | β | 2021 | β |
| iTRAQ-based proteomic analysis of the hippocampus of pentylenetetrazole-kindled epileptic rats. | Xu W et al. | β | 2021 | β |
| Mitophagy in Human Diseases. | Doblado L et al. | β | 2021 | β |
| PTEN Expression Regulates Gap Junction Connectivity in the Retina. | Chen AM et al. | β | 2021 | β |
| Role of Ash1l in Tourette syndrome and other neurodevelopmental disorders. | Zhang C et al. | β | 2021 | β |
| Schizophrenia risk ZNF804A interacts with its associated proteins to modulate dendritic morphology and synaptic development. | Dong F et al. | β | 2021 | β |
| The plasma peptides of Alzheimer's disease. | Florentinus-Mefailoski A et al. | β | 2021 | β |
| Translational control in neurovascular brain development. | Chalkiadaki K et al. | β | 2021 | β |
| Cognition and Reward Circuits in Schizophrenia: Synergistic, Not Separate. | Robison AJ et al. | β | 2020 | β |
| DISC1 Regulates Mitochondrial Trafficking in a Miro1-GTP-Dependent Manner. | Norkett R et al. | β | 2020 | β |
| Early 5-HT<sub>6</sub> receptor blockade prevents symptom onset in a model of adolescent cannabis abuse. | Berthoux C et al. | β | 2020 | β |
| <i>Disc1</i> Carrier Mice Exhibit Alterations in Neural pIGF-1RΞ² and Related Kinase Expression. | Sultana R et al. | β | 2020 | β |
| Imaging microstructure with diffusion and susceptibility MR: neuronal density correlation in Disrupted-in-Schizophrenia-1 mutant mice. | Gong NJ et al. | β | 2020 | β |
| Melatonin Act as an Antidepressant via Attenuation of Neuroinflammation by Targeting Sirt1/Nrf2/HO-1 Signaling. | Ali T et al. | β | 2020 | β |
| Waking up quiescent neural stem cells: Molecular mechanisms and implications in neurodevelopmental disorders. | Ding WY et al. | β | 2020 | β |
| Age-Dependent De Novo Mutations During Spermatogenesis and Their Consequences. | Cioppi F et al. | β | 2019 | β |
| An in-silico approach for discovery of microRNA-TF regulation of DISC1 interactome mediating neuronal migration. | John JP et al. | β | 2019 | β |
| Defective neurogenesis and schizophrenia-like behavior in PARP-1-deficient mice. | Hong S et al. | β | 2019 | β |
| Interplay between a Mental Disorder Risk Gene and Developmental Polarity Switch of GABA Action Leads to Excitation-Inhibition Imbalance. | Kang E et al. | β | 2019 | β |
| Kinase network dysregulation in a human induced pluripotent stem cell model of DISC1 schizophrenia. | Bentea E et al. | β | 2019 | β |
| Lack of Rhes Increases MDMA-Induced Neuroinflammation and Dopamine Neuron Degeneration: Role of Gender and Age. | Costa G et al. | β | 2019 | β |
| Loss of Glutamate Decarboxylase 67 in Somatostatin-Expressing Neurons Leads to Anxiety-Like Behavior and Alteration in the Akt/GSK3Ξ² Signaling Pathway. | Miyata S et al. | β | 2019 | β |
| Loss of postnatal quiescence of neural stem cells through mTOR activation upon genetic removal of cysteine string protein-Ξ±. | Nieto-GonzΓ‘lez JL et al. | β | 2019 | β |
| Neuroligin 3 Regulates Dendritic Outgrowth by Modulating Akt/mTOR Signaling. | Xu J et al. | β | 2019 | β |
| Adolescent Isolation Interacts With <i>DISC1</i> Point Mutation to Impair Adult Social Memory and Synaptic Functions in the Hippocampus. | Li N et al. | β | 2018 | β |
| Autocrine Mfge8 Signaling Prevents Developmental Exhaustion of the Adult Neural Stem Cell Pool. | Zhou Y et al. | β | 2018 | β |
| Golgipathies in Neurodevelopment: A New View of Old Defects. | Rasika S et al. | β | 2018 | β |
| Lead Neurotoxicity on Human Neuroblastoma Cell Line SH-SY5Y is Mediated via Transcription Factor EGR1/Zif268 Induced Disrupted in Scherophernia-1 Activation. | You Y et al. | β | 2018 | β |
| MicroRNAs Engage in Complex Circuits Regulating Adult Neurogenesis. | Stappert L et al. | β | 2018 | β |
| mTOR-Related Brain Dysfunctions in Neuropsychiatric Disorders. | Ryskalin L et al. | β | 2018 | β |
| Negative regulation of amino acid signaling by MAPK-regulated 4F2hc/Girdin complex. | Weng L et al. | β | 2018 | β |
| Neural mechanisms underlying GABAergic regulation of adult hippocampal neurogenesis. | Catavero C et al. | β | 2018 | β |
| Neural Stem Cell Dysfunction in Human Brain Disorders. | Liszewska E et al. | β | 2018 | β |
| Pleiotropic Effects of GLP-1 and Analogs on Cell Signaling, Metabolism, and Function. | Rowlands J et al. | β | 2018 | β |
| Repositioning of Somatic Golgi Apparatus Is Essential for the Dendritic Establishment of Adult-Born Hippocampal Neurons. | Rao S et al. | β | 2018 | β |
| Role of mTOR Complexes in Neurogenesis. | LiCausi F et al. | β | 2018 | β |
| Roles of autophagy in controlling stem cell identity: a perspective of self-renewal and differentiation. | Sotthibundhu A et al. | β | 2018 | β |
| The Role of the Eukaryotic Translation Initiation Factor 4E (eIF4E) in Neuropsychiatric Disorders. | Amorim IS et al. | β | 2018 | β |
| The Thyroid Hormone-target Gene Rhes a Novel Crossroad for Neurological and Psychiatric Disorders: New Insights from Animal Models. | Napolitano F et al. | β | 2018 | β |
| Treating Brain Disorders by Targeting Adult Neural Stem Cells. | Bao H et al. | β | 2018 | β |
| Brain-Derived Neurotrophic Factor Induces Cell Survival and the Migration of Murine Adult Hippocampal Precursor Cells During Differentiation In Vitro. | Ortiz-LΓ³pez L et al. | β | 2017 | β |
| Dendrite and spine modifications in autism and related neurodevelopmental disorders in patients and animal models. | MartΓnez-CerdeΓ±o V | β | 2017 | β |
| DISC1 Regulates Neurogenesis via Modulating Kinetochore Attachment of Ndel1/Nde1 during Mitosis. | Ye F et al. | β | 2017 | β |
| DISC1 Regulates the Proliferation and Migration of Mouse Neural Stem/Progenitor Cells through Pax5, Sox2, Dll1 and Neurog2. | Wu Q et al. | β | 2017 | β |
| Early postnatal exposure to isoflurane causes cognitive deficits and disrupts development of newborn hippocampal neurons via activation of the mTOR pathway. | Kang E et al. | β | 2017 | β |
| Expression of mutant DISC1 in Purkinje cells increases their spontaneous activity and impairs cognitive and social behaviors in mice. | Shevelkin AV et al. | β | 2017 | β |
| Long-Range GABAergic Inputs Regulate Neural Stem Cell Quiescence and Control Adult Hippocampal Neurogenesis. | Bao H et al. | β | 2017 | β |
| Primary Cilia as a Possible Link between Left-Right Asymmetry and Neurodevelopmental Diseases. | Trulioff A et al. | β | 2017 | β |
| The Immunoreactivity of PI3K/AKT Pathway After Prenatal Hypoxic Damage. | Wang H et al. | β | 2017 | β |
| The impact of Disrupted-in-Schizophrenia 1 (DISC1) on the dopaminergic system: a systematic review. | Dahoun T et al. | β | 2017 | β |
| Transgenerational impairment of hippocampal Akt-mTOR signaling and behavioral deficits in the offspring of mice that experience postpartum depression-like illness. | Wu R et al. | β | 2017 | β |
| Adult Neurogenesis and Psychiatric Disorders. | Kang E et al. | β | 2016 | β |
| A recessive form of extreme macrocephaly and mild intellectual disability complements the spectrum of PTEN hamartoma tumour syndrome. | Schwerd T et al. | β | 2016 | β |
| Brain Insulin-Like Growth Factor-I Directs the Transition from Stem Cells to Mature Neurons During Postnatal/Adult Hippocampal Neurogenesis. | Nieto-EstΓ©vez V et al. | β | 2016 | β |
| Brain-specific Crmp2 deletion leads to neuronal development deficits and behavioural impairments in mice. | Zhang H et al. | β | 2016 | β |
| Depression, Cytokine, and Cytokine by Treatment Interactions Modulate Gene Expression in Antipsychotic NaΓ―ve First Episode Psychosis. | Noto C et al. | β | 2016 | β |
| DISC1 regulates astrogenesis in the embryonic brain via modulation of RAS/MEK/ERK signaling through RASSF7. | Wang S et al. | β | 2016 | β |
| Disrupted-in-schizophrenia1 (DISC1) L100P mutation alters synaptic transmission and plasticity in the hippocampus and causes recognition memory deficits. | Cui L et al. | β | 2016 | β |
| Functional Implications of miR-19 in the Migration of Newborn Neurons in the Adult Brain. | Han J et al. | β | 2016 | β |
| Green tea compound epigallo-catechin-3-gallate (EGCG) increases neuronal survival in adult hippocampal neurogenesis in vivo and in vitro. | Ortiz-LΓ³pez L et al. | β | 2016 | β |
| Interaction between DISC1 and CHL1 in regulation of neurite outgrowth. | Ren J et al. | β | 2016 | β |
| Lin28A Binds Active Promoters and Recruits Tet1 to Regulate Gene Expression. | Zeng Y et al. | β | 2016 | β |
| Linking adult hippocampal neurogenesis with human physiology and disease. | Bowers M et al. | β | 2016 | β |
| Mammalian Target of Rapamycin: Its Role in Early Neural Development and in Adult and Aged Brain Function. | Garza-LombΓ³ C et al. | β | 2016 | β |
| Maternal immune activation: Implications for neuropsychiatric disorders. | Estes ML et al. | β | 2016 | β |
| Metabolomics approach reveals metabolic disorders and potential biomarkers associated with the developmental toxicity of tetrabromobisphenol A and tetrachlorobisphenol A. | Ye G et al. | β | 2016 | β |
| mTOR kinase is needed for the development and stabilization of dendritic arbors in newly born olfactory bulb neurons. | Skalecka A et al. | β | 2016 | β |
| Ndel1 suppresses ciliogenesis in proliferating cells by regulating the trichoplein-Aurora A pathway. | Inaba H et al. | β | 2016 | β |
| Obesity and Its Potential Effects on Antidepressant Treatment Outcomes in Patients with Depressive Disorders: A Literature Review. | Woo YS et al. | β | 2016 | β |
| Sodium ferulate and n-butylidenephthalate combined with bone marrow stromal cells (BMSCs) improve the therapeutic effects of angiogenesis and neurogenesis after rat focal cerebral ischemia. | Zhang Q et al. | β | 2016 | β |
| The TLX-miR-219 cascade regulates neural stem cell proliferation in neurodevelopment and schizophrenia iPSC model. | Murai K et al. | β | 2016 | β |
| A central role for the acid sphingomyelinase/ceramide system in neurogenesis and major depression. | Gulbins E et al. | β | 2015 | β |
| Blockade of 2-arachidonoylglycerol hydrolysis produces antidepressant-like effects and enhances adult hippocampal neurogenesis and synaptic plasticity. | Zhang Z et al. | β | 2015 | β |
| Cellular dynamics of neuronal migration in the hippocampus. | Hayashi K et al. | β | 2015 | β |
| Common mechanisms of excitatory and inhibitory imbalance in schizophrenia and autism spectrum disorders. | Gao R et al. | β | 2015 | β |
| DISC1-mediated dysregulation of adult hippocampal neurogenesis in rats. | Lee H et al. | β | 2015 | β |
| DISC1 Ser704Cys impacts thalamic-prefrontal connectivity. | Liu B et al. | β | 2015 | β |
| Disrupted-in-schizophrenia 1 regulates transport of ITPR1 mRNA for synaptic plasticity. | Tsuboi D et al. | β | 2015 | β |
| Extracellular and Intracellular Signaling for Neuronal Polarity. | Namba T et al. | β | 2015 | β |
| GIV/Girdin transmits signals from multiple receptors by triggering trimeric G protein activation. | Garcia-Marcos M et al. | β | 2015 | β |
| Increased abundance of translation machinery in stem cell-derived neural progenitor cells from four schizophrenia patients. | Topol A et al. | β | 2015 | β |
| Integrins activate trimeric G proteins via the nonreceptor protein GIV/Girdin. | Leyme A et al. | β | 2015 | β |
| Modeling non-syndromic autism and the impact of TRPC6 disruption in human neurons. | Griesi-Oliveira K et al. | β | 2015 | β |
| mTOR in Brain Physiology and Pathologies. | Bockaert J et al. | β | 2015 | β |
| Protection of Radial Glial-Like Cells in the Hippocampus of APP/PS1 Mice: a Novel Mechanism of Memantine in the Treatment of Alzheimer's Disease. | Sun D et al. | β | 2015 | β |
| PTEN deletion from adult-generated dentate granule cells disrupts granule cell mossy fiber axon structure. | LaSarge CL et al. | β | 2015 | β |
| Resveratrol Enhances Neuroplastic Changes, Including Hippocampal Neurogenesis, and Memory in Balb/C Mice at Six Months of Age. | Torres-PΓ©rez M et al. | β | 2015 | β |
| Rheb1 mediates DISC1-dependent regulation of new neuron development in the adult hippocampus. | Kang E et al. | β | 2015 | β |
| Ribosomal Protein S6 Phosphorylation in the Nervous System: From Regulation to Function. | Biever A et al. | β | 2015 | β |
| Role of adult hippocampal neurogenesis in cognition in physiology and disease: pharmacological targets and biomarkers. | Costa V et al. | β | 2015 | β |
| Schizophrenia and Depression Co-Morbidity: What We have Learned from Animal Models. | Samsom JN et al. | β | 2015 | β |
| Sonic hedgehog functions upstream of disrupted-in-schizophrenia 1 (disc1): implications for mental illness. | Boyd PJ et al. | β | 2015 | β |
| Subtype-specific regeneration of retinal ganglion cells following axotomy: effects of osteopontin and mTOR signaling. | Duan X et al. | β | 2015 | β |
| Tet3 regulates synaptic transmission and homeostatic plasticity via DNA oxidation and repair. | Yu H et al. | β | 2015 | β |
| The anti-aging and tumor suppressor protein Klotho enhances differentiation of a human oligodendrocytic hybrid cell line. | Chen CD et al. | β | 2015 | β |
| The tumor-suppressor gene LZTS1 suppresses colorectal cancer proliferation through inhibition of the AKT-mTOR signaling pathway. | Zhou W et al. | β | 2015 | β |
| Venlafaxine increases cell proliferation and regulates DISC1, PDE4B and NMDA receptor 2B expression in the hippocampus in chronic mild stress mice. | Zhang X et al. | β | 2015 | β |
| Abnormal behaviors and developmental disorder of hippocampus in zinc finger protein 521 (ZFP521) mutant mice. | Ohkubo N et al. | β | 2014 | β |
| Activity-dependent signaling mechanisms regulating adult hippocampal neural stem cells and their progeny. | Crowther AJ et al. | β | 2014 | β |
| Alterations of GABAergic and dopaminergic systems in mutant mice with disruption of exons 2 and 3 of the Disc1 gene. | Nakai T et al. | β | 2014 | β |
| Contrasting effects of chronic, systemic treatment with mTOR inhibitors rapamycin and metformin on adult neural progenitors in mice. | Kusne Y et al. | β | 2014 | β |
| Dendrite development regulated by the schizophrenia-associated gene FEZ1 involves the ubiquitin proteasome system. | Watanabe Y et al. | β | 2014 | β |
| DISC1 (disrupted-in-schizophrenia-1) regulates differentiation of oligodendrocytes. | Hattori T et al. | β | 2014 | β |
| DISC1 knockdown impairs the tangential migration of cortical interneurons by affecting the actin cytoskeleton. | Steinecke A et al. | β | 2014 | β |
| Disrupted in schizophrenia 1 and synaptic function in the mammalian central nervous system. | Randall AD et al. | β | 2014 | β |
| Disrupted-In-Schizophrenia-1 (DISC1) interactome and mental disorders: impact of mouse models. | Lipina TV et al. | β | 2014 | β |
| Environmental enrichment induces neuroplastic changes in middle age female Balb/c mice and increases the hippocampal levels of BDNF, p-Akt and p-MAPK1/2. | RamΓrez-RodrΓguez G et al. | β | 2014 | β |
| Functions and dysfunctions of adult hippocampal neurogenesis. | Christian KM et al. | β | 2014 | β |
| Genome-wide association study of alcohol dependence:significant findings in African- and European-Americans including novel risk loci. | Gelernter J et al. | β | 2014 | β |
| Hippocampal granule cell pathology in epilepsy - a possible structural basis for comorbidities of epilepsy? | Hester MS et al. | β | 2014 | β |
| Hippocampus remodeling by chronic stress accompanied by GR, proteasome and caspase-3 overexpression. | Orlovsky MA et al. | β | 2014 | β |
| Impaired autophagy: a link between neurodegenerative and neuropsychiatric diseases. | Polajnar M et al. | β | 2014 | β |
| [Mechanisms for the differentiation of postnatal and adult neural stem cells: new insights and pathological issues based on the analysis of Girdin]. | Enomoto A et al. | β | 2014 | β |
| Neurogenesis in neurological and psychiatric diseases and brain injury: from bench to bedside. | Ruan L et al. | β | 2014 | β |
| Selective activation of mTORC1 signaling recapitulates microcephaly, tuberous sclerosis, and neurodegenerative diseases. | Kassai H et al. | β | 2014 | β |
| The effect of deficient muscarinic signaling on commonly reported biochemical effects in schizophrenia and convergence with genetic susceptibility loci in explaining symptom dimensions of psychosis. | Vakalopoulos C | β | 2014 | β |
| The neurology of mTOR. | Lipton JO et al. | β | 2014 | β |
| Altered expression of synapse and glutamate related genes in post-mortem hippocampus of depressed subjects. | Duric V et al. | β | 2013 | β |
| An activated protein C analog stimulates neuronal production by human neural progenitor cells via a PAR1-PAR3-S1PR1-Akt pathway. | Guo H et al. | β | 2013 | β |
| Chronic ketamine produces altered distribution of parvalbumin-positive cells in the hippocampus of adult rats. | Sabbagh JJ et al. | β | 2013 | β |
| DISC1-ATF4 transcriptional repression complex: dual regulation of the cAMP-PDE4 cascade by DISC1. | Soda T et al. | β | 2013 | β |
| DISC1 genetics, biology and psychiatric illness. | Thomson PA et al. | β | 2013 | β |
| DISC1-related signaling pathways in adult neurogenesis of the hippocampus. | Wu Q et al. | β | 2013 | β |
| Evidence that Doublecortin is dispensable for the development of adult born neurons in mice. | Merz K et al. | β | 2013 | β |
| Gene expression profiling in treatment-naive schizophrenia patients identifies abnormalities in biological pathways involving AKT1 that are corrected by antipsychotic medication. | Kumarasinghe N et al. | β | 2013 | β |
| In vivo imaging of adult human hippocampal neurogenesis: progress, pitfalls and promise. | Ho NF et al. | β | 2013 | β |
| Long-lasting alterations to DNA methylation and ncRNAs could underlie the effects of fetal alcohol exposure in mice. | Laufer BI et al. | β | 2013 | β |
| Modeling autism by SHANK gene mutations in mice. | Jiang YH et al. | β | 2013 | β |
| mTOR complexes in neurodevelopmental and neuropsychiatric disorders. | Costa-Mattioli M et al. | β | 2013 | β |
| mTOR Inhibition ameliorates cognitive and affective deficits caused by Disc1 knockdown in adult-born dentate granule neurons. | Zhou M et al. | β | 2013 | β |
| Neural stem and progenitor cells in health and disease. | Ladran I et al. | β | 2013 | β |
| NMDA hypofunction as a convergence point for progression and symptoms of schizophrenia. | Snyder MA et al. | β | 2013 | β |
| Parvalbumin interneurons mediate neuronal circuitry-neurogenesis coupling in the adult hippocampus. | Song J et al. | β | 2013 | β |
| Personalized medicine in psychiatry: problems and promises. | Ozomaro U et al. | β | 2013 | β |
| Rare CNVs and tag SNPs at 15q11.2 are associated with schizophrenia in the Han Chinese population. | Zhao Q et al. | β | 2013 | β |
| The rationale of targeting mammalian target of rapamycin for ischemic stroke. | Chong ZZ et al. | β | 2013 | β |
| The Ξ± crystallin domain of small heat shock protein b8 (Hspb8) acts as survival and differentiation factor in adult hippocampal neurogenesis. | RamΓrez-RodrΓguez G et al. | β | 2013 | β |
| Wnt7a regulates multiple steps of neurogenesis. | Qu Q et al. | β | 2013 | β |
| A fight for survival: the challenges faced by a newborn neuron integrating in the adult hippocampus. | Bergami M et al. | β | 2012 | β |
| Age-related cognitive decline: can neural stem cells help us? | Artegiani B et al. | β | 2012 | β |
| AKT/GSK3 signaling pathway and schizophrenia. | Emamian ES | β | 2012 | β |
| Application of reprogrammed patient cells to investigate the etiology of neurological and psychiatric disorders. | Christian KM et al. | β | 2012 | β |
| Avoiding mouse traps in schizophrenia genetics: lessons and promises from current and emerging mouse models. | Kvajo M et al. | β | 2012 | β |
| Cell-autonomous inactivation of the reelin pathway impairs adult neurogenesis in the hippocampus. | Teixeira CM et al. | β | 2012 | β |
| Deregulated mTOR-mediated translation in intellectual disability. | Troca-MarΓn JA et al. | β | 2012 | β |
| DISC1-binding proteins in neural development, signalling and schizophrenia. | Bradshaw NJ et al. | β | 2012 | β |
| DISC1 Pathway in Brain Development: Exploring Therapeutic Targets for Major Psychiatric Disorders. | Kamiya A et al. | β | 2012 | β |
| Disrupted-in-Schizophrenia 1 (DISC1) is necessary for the correct migration of cortical interneurons. | Steinecke A et al. | β | 2012 | β |
| Functional characterization of the guanine nucleotide exchange factor (GEF) motif of GIV protein reveals a threshold effect in signaling. | Garcia-Marcos M et al. | β | 2012 | β |
| Functional role of adult hippocampal neurogenesis as a therapeutic strategy for mental disorders. | Jun H et al. | β | 2012 | β |
| Genomic analysis and selected molecular pathways in rare cancers. | Liu SV et al. | β | 2012 | β |
| Girdin maintains the stemness of glioblastoma stem cells. | Natsume A et al. | β | 2012 | β |
| G-protein-coupled receptors in adult neurogenesis. | Doze VA et al. | β | 2012 | β |
| Increased hippocampal Disrupted-In-Schizophrenia 1 expression in mice exposed prenatally to lead. | You Y et al. | β | 2012 | β |
| Increased serotonin-1A (5-HT1A) autoreceptor expression and reduced raphe serotonin levels in deformed epidermal autoregulatory factor-1 (Deaf-1) gene knock-out mice. | Czesak M et al. | β | 2012 | β |
| Inducible and conditional deletion of extracellular signal-regulated kinase 5 disrupts adult hippocampal neurogenesis. | Pan YW et al. | β | 2012 | β |
| Interaction networks of lithium and valproate molecular targets reveal a striking enrichment of apoptosis functional clusters and neurotrophin signaling. | Gupta A et al. | β | 2012 | β |
| Interplay between DISC1 and GABA signaling regulates neurogenesis in mice and risk for schizophrenia. | Kim JY et al. | β | 2012 | β |
| Involvement of Girdin in the determination of cell polarity during cell migration. | Ohara K et al. | β | 2012 | β |
| Modeling psychiatric disorders at the cellular and network levels. | Brennand KJ et al. | β | 2012 | β |
| Mutant DISC1 affects methamphetamine-induced sensitization and conditioned place preference: a comorbidity model. | Pogorelov VM et al. | β | 2012 | β |
| Neuronal circuitry mechanism regulating adult quiescent neural stem-cell fate decision. | Song J et al. | β | 2012 | β |
| Next-generation treatments for mental disorders. | Insel TR | β | 2012 | β |
| Paternal age effect mutations and selfish spermatogonial selection: causes and consequences for human disease. | Goriely A et al. | β | 2012 | β |
| Prophylactic valproic acid treatment prevents schizophrenia-related behaviour in Disc1-L100P mutant mice. | Lipina TV et al. | β | 2012 | β |
| Roles of PI3K/AKT/GSK3/mTOR Pathway in Cell Signaling of Mental Illnesses. | Kitagishi Y et al. | β | 2012 | β |
| SREB2/GPR85, a schizophrenia risk factor, negatively regulates hippocampal adult neurogenesis and neurogenesis-dependent learning and memory. | Chen Q et al. | β | 2012 | β |
| Susceptibility genes for schizophrenia: mutant models, endophenotypes and psychobiology. | O'Tuathaigh CM et al. | β | 2012 | β |
| Synergistic interactions between PDE4B and GSK-3: DISC1 mutant mice. | Lipina TV et al. | β | 2012 | β |
| Wnt signaling: role in Alzheimer disease and schizophrenia. | Inestrosa NC et al. | β | 2012 | β |
| Abnormal behavior in mice mutant for the Disc1 binding partner, Dixdc1. | KivimΓ€e S et al. | β | 2011 | β |
| Adult neurogenesis in the mammalian brain: significant answers and significant questions. | Ming GL et al. | β | 2011 | β |
| Altered axonal targeting and short-term plasticity in the hippocampus of Disc1 mutant mice. | Kvajo M et al. | β | 2011 | β |
| Behavioral alterations associated with targeted disruption of exons 2 and 3 of the Disc1 gene in the mouse. | Kuroda K et al. | β | 2011 | β |
| Beyond cAMP: The Regulation of Akt and GSK3 by Dopamine Receptors. | Beaulieu JM et al. | β | 2011 | β |
| Caveolin-1 plays a crucial role in inhibiting neuronal differentiation of neural stem/progenitor cells via VEGF signaling-dependent pathway. | Li Y et al. | β | 2011 | β |
| Cellular reprogramming: recent advances in modeling neurological diseases. | Ming GL et al. | β | 2011 | β |
| Common DISC1 polymorphisms disrupt Wnt/GSK3Ξ² signaling and brain development. | Singh KK et al. | β | 2011 | β |
| Differential effects of prenatal and postnatal expressions of mutant human DISC1 on neurobehavioral phenotypes in transgenic mice: evidence for neurodevelopmental origin of major psychiatric disorders. | Ayhan Y et al. | β | 2011 | β |
| DISC1 at 10: connecting psychiatric genetics and neuroscience. | Porteous DJ et al. | β | 2011 | β |
| Disc1 regulates both Ξ²-catenin-mediated and noncanonical Wnt signaling during vertebrate embryogenesis. | De Rienzo G et al. | β | 2011 | β |
| DISC1 regulates synaptic vesicle transport via a lithium-sensitive pathway. | Flores R et al. | β | 2011 | β |
| DISC1: Structure, Function, and Therapeutic Potential for Major Mental Illness. | Soares DC et al. | β | 2011 | β |
| Disrupted-in-Schizophrenia-1 (Disc1) is necessary for migration of the pyramidal neurons during mouse hippocampal development. | Tomita K et al. | β | 2011 | β |
| Dysregulated mTORC1-Dependent Translational Control: From Brain Disorders to Psychoactive Drugs. | Santini E et al. | β | 2011 | β |
| Evidence for association between Disrupted-in-Schizophrenia 1 (DISC1) gene polymorphisms and autism in Chinese Han population: a family-based association study. | Zheng F et al. | β | 2011 | β |
| Frontier of epilepsy research - mTOR signaling pathway. | Cho CH | β | 2011 | β |
| Genetic and pharmacological evidence for schizophrenia-related Disc1 interaction with GSK-3. | Lipina TV et al. | β | 2011 | β |
| Girdin is an intrinsic regulator of neuroblast chain migration in the rostral migratory stream of the postnatal brain. | Wang Y et al. | β | 2011 | β |
| Inhibition of Akt with small molecules and biologics: historical perspective and current status of the patent landscape. | Mattmann ME et al. | β | 2011 | β |
| Interaction between FEZ1 and DISC1 in regulation of neuronal development and risk for schizophrenia. | Kang E et al. | β | 2011 | β |
| In vivo clonal analysis reveals self-renewing and multipotent adult neural stem cell characteristics. | Bonaguidi MA et al. | β | 2011 | β |
| Linking neurodevelopmental and synaptic theories of mental illness through DISC1. | Brandon NJ et al. | β | 2011 | β |
| Ndel1, Nudel (Noodle): flexible in the cell? | Chansard M et al. | β | 2011 | β |
| Neuroplasticity signaling pathways linked to the pathophysiology of schizophrenia. | Balu DT et al. | β | 2011 | β |
| NMDA receptor regulates migration of newly generated neurons in the adult hippocampus via Disrupted-In-Schizophrenia 1 (DISC1). | Namba T et al. | β | 2011 | β |
| PKA phosphorylation of NDE1 is DISC1/PDE4 dependent and modulates its interaction with LIS1 and NDEL1. | Bradshaw NJ et al. | β | 2011 | β |
| Progress in defining the biological causes of schizophrenia. | Pickard B | β | 2011 | β |
| Regulation of the cytoskeleton by Disrupted-in-schizophrenia 1 (DISC1). | Wang Q et al. | β | 2011 | β |
| Role of laminin-111 in neurotrophin-3 production of canine adipose-derived stem cells: involvement of Akt, mTOR, and p70S6K. | Park SS et al. | β | 2011 | β |
| Sex differences in the activity of signalling pathways and expression of G-protein-coupled receptor kinases in the neonatal ventral hippocampal lesion model of schizophrenia. | Bychkov E et al. | β | 2011 | β |
| Synaptic dysfunction and abnormal behaviors in mice lacking major isoforms of Shank3. | Wang X et al. | β | 2011 | β |
| The New York Stem Cell Foundation: Fifth Annual Translational Stem Cell Research Conference. | Marshall C et al. | β | 2011 | β |
| The physiology, signaling, and pharmacology of dopamine receptors. | Beaulieu JM et al. | β | 2011 | β |
| The psychiatric disease risk factors DISC1 and TNIK interact to regulate synapse composition and function. | Wang Q et al. | β | 2011 | β |
| The role of selective transport in neuronal polarization. | Namba T et al. | β | 2011 | β |
| 2009: signaling breakthroughs of the year. | Adler EM | β | 2010 | β |
| Antipsychotic drugs activate the C. elegans akt pathway via the DAF-2 insulin/IGF-1 receptor. | Weeks KR et al. | β | 2010 | β |
| Aspartate racemase, generating neuronal D-aspartate, regulates adult neurogenesis. | Kim PM et al. | β | 2010 | β |
| Assessing the role of endooligopeptidase activity of Ndel1 (nuclear-distribution gene E homolog like-1) in neurite outgrowth. | Hayashi MA et al. | β | 2010 | β |
| DISC1 regulates cell-cell adhesion, cell-matrix adhesion and neurite outgrowth. | Hattori T et al. | β | 2010 | β |
| Dixdc1 is a critical regulator of DISC1 and embryonic cortical development. | Singh KK et al. | β | 2010 | β |
| Does GSK-3 provide a shortcut for PI3K activation of Wnt signalling? | Voskas D et al. | β | 2010 | β |
| Girding for migratory cues: roles of the Akt substrate Girdin in cancer progression and angiogenesis. | Weng L et al. | β | 2010 | β |
| Hippocampal neurogenesis as a target for the treatment of mental illness: a critical evaluation. | DeCarolis NA et al. | β | 2010 | β |
| Migration defects by DISC1 knockdown in C57BL/6, 129X1/SvJ, and ICR strains via in utero gene transfer and virus-mediated RNAi. | Kubo K et al. | β | 2010 | β |
| Modelling disrupted-in-schizophrenia 1 loss of function in human neural progenitor cells: tools for molecular studies of human neurodevelopment and neuropsychiatric disorders. | Kobayashi NR et al. | β | 2010 | β |
| Neural stem cell regulation, fibroblast growth factors, and the developmental origins of neuropsychiatric disorders. | Stevens HE et al. | β | 2010 | β |
| PHLPP1 splice variants differentially regulate AKT and PKCΞ± signaling in hippocampal neurons: characterization of PHLPP proteins in the adult hippocampus. | Jackson TC et al. | β | 2010 | β |
| Switching DISC1 function in neurogenesis: Dixdc1 selects DISC1 binding partners. | Namba T et al. | β | 2010 | β |
| The DISC1 Ser704Cys substitution affects centrosomal localization of its binding partner PCM1 in glia in human brain. | Eastwood SL et al. | β | 2010 | β |
| The neurobiology of schizophrenia: new leads and avenues for treatment. | Bray NJ et al. | β | 2010 | β |
| How DISC1 regulates postnatal brain development: girdin gets in on the AKT. | Porteous D et al. | β | 2009 | β |