ARID proteins: a diverse family of DNA binding proteins implicated in the control of cell growth, differentiation, and development.
- Authors
- Wilsker, Deborah; Patsialou, Antonia; Dallas, Peter B; Moran, Elizabeth
- Year
- 2002
- Journal
- Cell growth & differentiation : the molecular biology journal of the American Association for Cancer Research
- PMID
- 11959810
The ARID family of DNA binding proteins was first recognized approximately 5 years ago. The founding members, murine Bright and Drosophila dead ringer (Dri), were independently cloned on the basis of their ability to bind to AT-rich DNA sequences, although neither cDNA encoded a recognizable DNA binding domain. Mapping of the respective binding activities revealed a shared but previously unrecognized DNA binding domain, the consensus sequence of which extends across approximately 100 amino acids. This novel DNA binding domain was designated AT-rich interactive domain (ARID), based on the behavior of Bright and Dri. The consensus sequence occurs in 13 distinct human proteins and in proteins from all sequenced eukaryotic organisms. The majority of ARID-containing proteins were not cloned in the context of DNA binding activity, however, and their features as DNA binding proteins are only beginning to be investigated. The ARID region itself shows more diversity in structure and function than the highly conserved consensus sequence suggests. The basic structure appears to be a series of six alpha-helices separated by beta-strands, loops, or turns, but the structured region may extend to an additional helix at either or both ends of the basic six. It has also become apparent that the DNA binding activity of ARID-containing proteins is not necessarily sequence specific. What is consistent is the evidence that family members play vital roles in the regulation of development and/or tissue-specific gene expression. Inappropriate expression of ARID proteins is also increasingly implicated in human tumorigenesis. This review summarizes current knowledge about the structure and function of ARID family members, with a particular focus on the human proteins.
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| Title | Authors | Journal | Year | Link |
|---|---|---|---|---|
| A bortezomib resistance-related gene signature predicts prognosis, with ARID5B downregulation associated with poor overall survival in multiple myeloma. | Ding Y et al. | β | 2026 | β |
| The RNA binding protein Arid5a is an activator of TNF signaling in rheumatoid arthritis. | Li Y et al. | β | 2026 | β |
| ARID3A inhibits colorectal cancer cell stemness and drug-resistance by targeting a multitude of stemness-associated genes. | Gope TK et al. | β | 2025 | β |
| ARID4B: An Orchestrator from Stem Cell Fate to Carcinogenesis. | Kandy RRK et al. | β | 2025 | β |
| AT-rich interaction domain 5A facilitates axon regeneration through docking protein 6 in the peripheral nervous system. | Ren Z et al. | β | 2025 | β |
| Disruption of ARID1B Recruitment to the Nuclear Pore Complex as a New Anticancer Therapeutic Strategy. | Odnokoz O et al. | β | 2025 | β |
| Epigenetic roles of chromatin remodeling complexes in bone biology and the pathogenesis of boneβrelated disease (Review). | Wu W et al. | β | 2025 | β |
| Genetic susceptibility of <i>IKZF1</i>, <i>ARID5B</i>, and <i>CEBPE</i> polymorphisms to childhood acute lymphoblastic leukemia in Chinese populations: a case-control study. | Cao X et al. | β | 2025 | β |
| Impact of frequent ARID1A mutations on protein stability provides insights into cancer pathogenesis. | Goutam RK et al. | β | 2025 | β |
| ARID3A enhances chemoresistance of pancreatic cancer via inhibiting PTEN-induced ferroptosis. | Mao X et al. | β | 2024 | β |
| Arid3c identifies an uncharacterized subpopulation of V2 interneurons during embryonic spinal cord development. | Renaux E et al. | β | 2024 | β |
| Arid5a uses disordered extensions of its core ARID domain for distinct DNA- and RNA-recognition and gene regulation. | von Ehr J et al. | β | 2024 | β |
| ARID5B is a negative modulator of IL-6 production in rheumatoid arthritis synovial fibroblasts. | Tagawa Y et al. | β | 2024 | β |
| HMGA1 orchestrates chromatin compartmentalization and sequesters genes into 3D networks coordinating senescence heterogeneity. | Olan I et al. | β | 2024 | β |
| <i>ARID5B</i>, <i>IKZF1</i>, <i>GATA3</i>, <i>CEBPE</i>, and <i>CDKN2A</i> germline polymorphisms and predisposition to childhood acute lymphoblastic leukemia. | Al-Zayan NR et al. | β | 2024 | β |
| PbARID-associated chromatin remodeling events are essential for gametocyte development in Plasmodium. | Nishi T et al. | β | 2024 | β |
| Single-cell Transcriptomic Studies Unveil Potential Nodes of the Notochord Gene Regulatory Network. | NegrΓ³n-PiΓ±eiro LJ et al. | β | 2024 | β |
| Association of two ARID5B gene variant single nucleotide polymorphisms with acute lymphoblastic leukemia in the Egyptian population. | Gamaleldin MA et al. | β | 2023 | β |
| Cell context-dependent CFI-1/ARID3 functions control neuronal terminal differentiation. | Li Y et al. | β | 2023 | β |
| Contributions of ARID5B, IKZF1, PIP4K2A, and GATA3 Gene Polymorphisms to Childhood Acute Lymphoblastic Leukemia in a Chinese Population. | Liu X et al. | β | 2023 | β |
| Epigenetic signature of human immune aging in the GESTALT study. | Roy R et al. | β | 2023 | β |
| Epigenetic signature of human immune aging: the GESTALT study | Roy R et al. | β | 2023 | β |
| Genes of Predisposition to Childhood Beta-Cell Acute Lymphoblastic Leukemia in the Kazakh Population. | Svyatova G et al. | β | 2023 | β |
| Genome-wide association analysis for drought tolerance and associated traits in faba bean (<i>Vicia faba</i> L.). | GutiΓ©rrez N et al. | β | 2023 | β |
| Over-Expression of ARID3B Suppresses Tumor Progression and Predicts Better Prognosis in Patients With Gastric Cancer. | Zhang X et al. | β | 2023 | β |
| Regulators of male and female sexual development are critical for the transmission of a malaria parasite. | Russell AJC et al. | β | 2023 | β |
| Several genetic variants associated with systemic sclerosis in a Chinese Han population. | Liu C et al. | β | 2023 | β |
| The emerging role of Arid5a in cancer: A new target for tumors. | Nyati KK et al. | β | 2023 | β |
| A novel heterozygous missense variant of the ARID4A gene identified in Han Chinese families with schizophrenia-diagnosed siblings that interferes with DNA-binding activity. | Ren D et al. | β | 2022 | β |
| Arid5a Mediates an IL-17-Dependent Pathway That Drives Autoimmunity but Not Antifungal Host Defense. | Taylor TC et al. | β | 2022 | β |
| Identification of Potential Treatments for Acute Lymphoblastic Leukemia through Integrated Genomic Network Analysis. | Zazuli Z et al. | β | 2022 | β |
| MiR-361-3p promotes tumorigenesis of osteosarcoma cells via targeting ARID3A. | Zhou D et al. | β | 2022 | β |
| Muscle-specific deletion of <i>Arid5b</i> causes metabolic changes in skeletal muscle that affect adipose tissue and liver. | Murray J et al. | β | 2022 | β |
| Roles of RNA-binding proteins in immune diseases and cancer. | Hashimoto S et al. | β | 2022 | β |
| Structure and DNA binding analysis of AT-rich interaction domain present in human BAF-B specific subunit BAF250b. | Giri M et al. | β | 2022 | β |
| The Prognostic Value of AT-Rich Interaction Domain (ARID) Family Members in Patients with Hepatocellular Carcinoma. | Li S et al. | β | 2022 | β |
| Transcriptomic Changes of <i>Bemisia tabaci</i> Asia II 1 Induced by Chilli Leaf Curl Virus Trigger Infection and Circulation in Its Vector. | Nekkanti A et al. | β | 2022 | β |
| ARID3A promotes the development of colorectal cancer by upregulating AURKA. | Tang J et al. | β | 2021 | β |
| Deficiencies in the DNA Binding Protein ARID3a Alter Chromatin Structures Important for Early Human Erythropoiesis. | Garton J et al. | β | 2021 | β |
| Differentiation of fetal hematopoietic stem cells requires ARID4B to restrict autocrine KITLG/KIT-Src signaling. | Young IC et al. | β | 2021 | β |
| DNA methylation predicts age and provides insight into exceptional longevity of bats. | Wilkinson GS et al. | β | 2021 | β |
| Downregulation of ARID1A in gastric cancer cells: a putative protective molecular mechanism against the Harakiri-mediated apoptosis pathway. | Sakuratani T et al. | β | 2021 | β |
| Expression and Prognostic Value of ARID5A and its Correlation With Tumor-Infiltrating Immune Cells in Glioma. | Zhou Q et al. | β | 2021 | β |
| Expression and prognostic values of ARID family members in breast cancer. | Zhang J et al. | β | 2021 | β |
| Expression Signature of the AT-Rich Interactive Domain Gene Family Identified in Digestive Cancer. | Lu Y et al. | β | 2021 | β |
| <i>ARID5B</i> rs10821936 and rs10994982 gene polymorphism and susceptibility to juvenile systemic lupus erythematosus and lupus nephritis. | Mosaad YM et al. | β | 2021 | β |
| Recent Advances in the Role of Arid5a in Immune Diseases and Cancer. | Nyati KK et al. | β | 2021 | β |
| WITHDRAWN: Circ_0000517 contributes to hepatocellular carcinoma progression by upregulating ARID4B via sponging miR-328-3p. | Zhao Y et al. | β | 2021 | β |
| ARID4B is critical for mouse embryonic stem cell differentiation towards mesoderm and endoderm, linking epigenetics to pluripotency exit. | Terzi Cizmecioglu N et al. | β | 2020 | β |
| Association of genes <i>ARID5B, CEBPE</i> and folate pathway with acute lymphoblastic leukemia in a population from the Brazilian Amazon region. | Carvalho DC et al. | β | 2020 | β |
| Characterization and Stress Response of the JmjC Domain-Containing Histone Demethylase Gene Family in the Allotetraploid Cotton Species <i>Gossypium hirsutum</i>. | Zhang J et al. | β | 2020 | β |
| Dual Recognition of H3K4me3 and DNA by the ISWI Component ARID5 Regulates the Floral Transition in Arabidopsis. | Tan LM et al. | β | 2020 | β |
| Harnessing stemness and PD-L1 expression by AT-rich interaction domain-containing protein 3B in colorectal cancer. | Liao TT et al. | β | 2020 | β |
| Historical overview of the interleukin-6 family cytokine. | Kang S et al. | β | 2020 | β |
| <i>ARID5B</i> Influences Antimetabolite Drug Sensitivity and Prognosis of Acute Lymphoblastic Leukemia. | Xu H et al. | β | 2020 | β |
| Identification of genome-wide targets and DNA recognition sequence of the Arabidopsis HMG-box protein AtHMGB15 during cold stress response. | Mallik R et al. | β | 2020 | β |
| The Role of ARID5B in Acute Lymphoblastic Leukemia and Beyond. | Wang P et al. | β | 2020 | β |
| The Role of LIN28-<i>let-7</i>-ARID3B Pathway in Placental Development. | Ali A et al. | β | 2020 | β |
| Transcriptional Regulation of Genes by Ikaros Tumor Suppressor in Acute Lymphoblastic Leukemia. | Dhanyamraju PK et al. | β | 2020 | β |
| ARID5B gene polymorphisms and the risk of childhood acute lymphoblastic leukemia: a meta-analysis. | Yang JL et al. | β | 2019 | β |
| Feedback regulation of Arid5a and Ppar-Ξ³2 maintains adipose tissue homeostasis. | Chalise JP et al. | β | 2019 | β |
| Genetic polymorphisms of ARID5B rs7089424 and rs10994982 are associated with B-lineage ALL susceptibility in Chinese pediatric population. | Tao R et al. | β | 2019 | β |
| <i>ARID5B</i> Genetic Polymorphisms Contribute to the Susceptibility and Prognosis of Male Acute Promyelocytic Leukemia. | Zhou J et al. | β | 2019 | β |
| Molecular determinants of complex formation between DNA and the AT-rich interaction domain of BAF250a. | Maulik A et al. | β | 2019 | β |
| New Frontiers: ARID3a in SLE. | Garton J et al. | β | 2019 | β |
| Post-transcriptional control of immune responses and its potential application. | Yoshinaga M et al. | β | 2019 | β |
| Buried in PEAT-discovery of a new silencing complex with opposing activities. | Tsuzuki M et al. | β | 2018 | β |
| Domain architecture of BAF250a reveals the ARID and ARM-repeat domains with implication in function and assembly of the BAF remodeling complex. | Sandhya S et al. | β | 2018 | β |
| Ectomesoderm and epithelial-mesenchymal transition-related genes in spiralian development. | Osborne CC et al. | β | 2018 | β |
| Positional specificity of different transcription factor classes within enhancers. | Grossman SR et al. | β | 2018 | β |
| RETRACTED: Interaction of AtHMGB15, an ARID-HMG family protein, with RING-H2 type E3 ubiquitin ligase AtATL79. | Ganguly P et al. | β | 2018 | β |
| The PHD Transcription Factor Rum1 Regulates Morphogenesis and Aflatoxin Biosynthesis in <i>Aspergillus flavus</i>. | Hu Y et al. | β | 2018 | β |
| ARID4B is a good biomarker to predict tumour behaviour and decide WHO grades in gliomas and meningiomas. | Tsai WC et al. | β | 2017 | β |
| Arid5a-deficient mice are highly resistant to bleomycin-induced lung injury. | Dubey PK et al. | β | 2017 | β |
| ARID5B as a critical downstream target of the TAL1 complex that activates the oncogenic transcriptional program and promotes T-cell leukemogenesis. | Leong WZ et al. | β | 2017 | β |
| Chimeric Genes in Deletions and Duplications Associated with Intellectual Disability. | Mayo S et al. | β | 2017 | β |
| miR-376c promotes carcinogenesis and serves as a plasma marker for gastric carcinoma. | Hung PS et al. | β | 2017 | β |
| Deciphering the role of the AT-rich interaction domain and the HMG-box domain of ARID-HMG proteins of Arabidopsis thaliana. | Roy A et al. | β | 2016 | β |
| The Role of Protein Loops and Linkers in Conformational Dynamics and Allostery. | Papaleo E et al. | β | 2016 | β |
| The Transcription Factor ARID3a Is Important for In Vitro Differentiation of Human Hematopoietic Progenitors. | Ratliff ML et al. | β | 2016 | β |
| A developmentally plastic adult mouse kidney cell line spontaneously generates multiple adult kidney structures. | Webb CF et al. | β | 2015 | β |
| ARID3B Directly Regulates Ovarian Cancer Promoting Genes. | Bobbs A et al. | β | 2015 | β |
| ARID5B, IKZF1 and non-genetic factors in the etiology of childhood acute lymphoblastic leukemia: the ESCALE study. | Rudant J et al. | β | 2015 | β |
| Binding of human SWI1 ARID domain to DNA without sequence specificity: A molecular dynamics study. | Sun Q et al. | β | 2015 | β |
| Critical role of ARID3B in the expression of pro-apoptotic p53-target genes and apoptosis. | Pratama E et al. | β | 2015 | β |
| H3K4me3 demethylation by the histone demethylase KDM5C/JARID1C promotes DNA replication origin firing. | Rondinelli B et al. | β | 2015 | β |
| Histone demethylase JARID1C inactivation triggers genomic instability in sporadic renal cancer. | Rondinelli B et al. | β | 2015 | β |
| Mutations in ARID2 are associated with intellectual disabilities. | Shang L et al. | β | 2015 | β |
| OsARID3, an AT-rich Interaction Domain-containing protein, is required for shoot meristem development in rice. | Xu Y et al. | β | 2015 | β |
| Reprogramming barriers and enhancers: strategies to enhance the efficiency and kinetics of induced pluripotency. | Ebrahimi B | β | 2015 | β |
| Transcriptional and epigenetic substrates of methamphetamine addiction and withdrawal: evidence from a long-access self-administration model in the rat. | Cadet JL et al. | β | 2015 | β |
| ARID3B expression in primary breast cancers and breast cancer-derived cell lines. | Oguz Erdogan AS et al. | β | 2014 | β |
| ARID3B increases ovarian tumor burden and is associated with a cancer stem cell gene signature. | Roy L et al. | β | 2014 | β |
| Associations between AT-rich interactive domain 5B gene polymorphisms and risk of childhood acute lymphoblastic leukemia: a meta-analysis. | Zeng H et al. | β | 2014 | β |
| AT-rich-interactive domain-containing protein 5A functions as a negative regulator of retinoic acid receptor-related orphan nuclear receptor Ξ³t-induced Th17 cell differentiation. | Saito Y et al. | β | 2014 | β |
| Bright/Arid3A acts as a barrier to somatic cell reprogramming through direct regulation of Oct4, Sox2, and Nanog. | Popowski M et al. | β | 2014 | β |
| Differential expression of ARID3B in normal adult tissue and carcinomas. | Samyesudhas SJ et al. | β | 2014 | β |
| Exome sequencing reveals frequent inactivating mutations in ARID1A, ARID1B, ARID2 and ARID4A in microsatellite unstable colorectal cancer. | Cajuso T et al. | β | 2014 | β |
| High expression of AT-rich interactive domain 3A (ARID3A) is associated with good prognosis in colorectal carcinoma. | Song M et al. | β | 2014 | β |
| High-resolution melting analyses for genetic variants in ARID5B and IKZF1 with childhood acute lymphoblastic leukemia susceptibility loci in Taiwan. | Lin CY et al. | β | 2014 | β |
| Integrative genomics analysis reveals the multilevel dysregulation and oncogenic characteristics of TEAD4 in gastric cancer. | Lim B et al. | β | 2014 | β |
| Recent advances in the ARID family: focusing on roles in human cancer. | Lin C et al. | β | 2014 | β |
| Regulating the chromatin landscape: structural and mechanistic perspectives. | Bartholomew B | β | 2014 | β |
| SWI/SNF chromatin remodeling enzymes in melanocyte differentiation and melanoma. | Mehrotra A et al. | β | 2014 | β |
| The ARID-HMG DNA-binding protein AtHMGB15 is required for pollen tube growth in Arabidopsis thaliana. | Xia C et al. | β | 2014 | β |
| Arid5b facilitates chondrogenesis by recruiting the histone demethylase Phf2 to Sox9-regulated genes. | Hata K et al. | β | 2013 | β |
| Association of three polymorphisms in ARID5B, IKZF1 and CEBPE with the risk of childhood acute lymphoblastic leukemia in a Chinese population. | Wang Y et al. | β | 2013 | β |
| Protein complex interactor analysis and differential activity of KDM3 subfamily members towards H3K9 methylation. | Brauchle M et al. | β | 2013 | β |
| Splice variants of the SIP1 transcripts play a role in nodule organogenesis in Lotus japonicus. | Wang C et al. | β | 2013 | β |
| Allelic variation and differential expression of the mSIN3A histone deacetylase complex gene Arid4b promote mammary tumor growth and metastasis. | Winter SF et al. | β | 2012 | β |
| ARID3B induces tumor necrosis factor alpha mediated apoptosis while a novel ARID3B splice form does not induce cell death. | Joseph S et al. | β | 2012 | β |
| Cooperation between ARID3A and p53 in the transcriptional activation of p21WAF1 in response to DNA damage. | Lestari W et al. | β | 2012 | β |
| Delineation of the interstitial 6q25 microdeletion syndrome: refinement of the critical causative region. | Michelson M et al. | β | 2012 | β |
| Genome wide association studies (GWAS) and copy number variation (CNV) studies of the major psychoses: what have we learnt? | Lee KW et al. | β | 2012 | β |
| Plant proteins containing high mobility group box DNA-binding domains modulate different nuclear processes. | Antosch M et al. | β | 2012 | β |
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| Cyclin-dependent kinase-mediated phosphorylation of RBP1 and pRb promotes their dissociation to mediate release of the SAP30Β·mSin3Β·HDAC transcriptional repressor complex. | Suryadinata R et al. | β | 2011 | β |
| Genome-wide association study of theta band event-related oscillations identifies serotonin receptor gene HTR7 influencing risk of alcohol dependence. | Zlojutro M et al. | β | 2011 | β |
| Inhibitors of histone demethylases. | Lohse B et al. | β | 2011 | β |
| Role of 657del5 NBN mutation and 7p12.2 (IKZF1), 9p21 (CDKN2A), 10q21.2 (ARID5B) and 14q11.2 (CEBPE) variation and risk of childhood ALL in the Polish population. | Pastorczak A et al. | β | 2011 | β |
| The herpes simplex virus immediate-early ubiquitin ligase ICP0 induces degradation of the ICP0 repressor protein E2FBP1. | Fukuyo Y et al. | β | 2011 | β |
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| Loss of Bright/ARID3a function promotes developmental plasticity. | An G et al. | β | 2010 | β |
| Low-penetrance susceptibility to hematological malignancy. | Houlston RS | β | 2010 | β |
| Replication analysis confirms the association of ARID5B with childhood B-cell acute lymphoblastic leukemia. | Healy J et al. | β | 2010 | β |
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| The mRNA expression of SATB1 and SATB2 in human breast cancer. | Patani N et al. | β | 2009 | β |
| A novel ARID DNA-binding protein interacts with SymRK and is expressed during early nodule development in Lotus japonicus. | Zhu H et al. | β | 2008 | β |
| A novel family of plant DNA-binding proteins containing both HMG-box and AT-rich interaction domains. | Hansen FT et al. | β | 2008 | β |
| Genetic variations of Mrf-2/ARID5B confer risk of coronary atherosclerosis in the Japanese population. | Wang G et al. | β | 2008 | β |
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| A novel ARID/Bright-like protein involved in transcriptional activation of cyst wall protein 1 gene in Giardia lamblia. | Wang CH et al. | β | 2007 | β |
| cDNA cloning, bioinformatic and tissue-specific expression analysis of porcine JARID1C gene. | Yi L et al. | β | 2007 | β |
| Functional analysis of the transcription repressor PLU-1/JARID1B. | Scibetta AG et al. | β | 2007 | β |
| Genetic and epigenetic mechanisms of gene regulation during lens development. | Cvekl A et al. | β | 2007 | β |
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| Stable differentiation and clonality of murine long-term hematopoiesis after extended reduced-intensity selection for MGMT P140K transgene expression. | Ball CR et al. | β | 2007 | β |
| The Drosophila jumonji gene encodes a JmjC-containing nuclear protein that is required for metamorphosis. | Sasai N et al. | β | 2007 | β |
| The X-linked mental retardation gene SMCX/JARID1C defines a family of histone H3 lysine 4 demethylases. | Iwase S et al. | β | 2007 | β |
| 6A3-5/Osa2 is an early activated gene implicated in the control of vascular smooth muscle cell functions. | Garin G et al. | β | 2006 | β |
| Isolation and characterization of SATB2, a novel AT-rich DNA binding protein expressed in development- and cell-specific manner in the rat brain. | Szemes M et al. | β | 2006 | β |
| Microarray analysis of PDGFR alpha+ populations in ES cell differentiation culture identifies genes involved in differentiation of mesoderm and mesenchyme including ARID3b that is essential for development of embryonic mesenchymal cells. | Takebe A et al. | β | 2006 | β |
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| Compensating increases in protein backbone flexibility occur when the Dead ringer AT-rich interaction domain (ARID) binds DNA: a nitrogen-15 relaxation study. | Iwahara J et al. | β | 2005 | β |
| Composition and functional specificity of SWI2/SNF2 class chromatin remodeling complexes. | Mohrmann L et al. | β | 2005 | β |
| DNA-binding properties of ARID family proteins. | Patsialou A et al. | β | 2005 | β |
| Functional genomics of the regulation of the nitrate assimilation pathway in Chlamydomonas. | GonzΓ‘lez-Ballester D et al. | β | 2005 | β |
| Modulator recognition factor 1, an AT-rich interaction domain family member, is a novel corepressor for estrogen receptor alpha. | Georgescu SP et al. | β | 2005 | β |
| Mutations in the JARID1C gene, which is involved in transcriptional regulation and chromatin remodeling, cause X-linked mental retardation. | Jensen LR et al. | β | 2005 | β |
| RNA transcript profiling during zygotic gene activation in the preimplantation mouse embryo. | Zeng F et al. | β | 2005 | β |
| 1,25-dihydroxyvitamin D3 down-regulation of PHEX gene expression is mediated by apparent repression of a 110 kDa transfactor that binds to a polyadenine element in the promoter. | Hines ER et al. | β | 2004 | β |
| Differential targeting of two distinct SWI/SNF-related Drosophila chromatin-remodeling complexes. | Mohrmann L et al. | β | 2004 | β |
| Expression of p270 (ARID1A), a component of human SWI/SNF complexes, in human tumors. | Wang X et al. | β | 2004 | β |
| The DNA-binding properties of the ARID-containing subunits of yeast and mammalian SWI/SNF complexes. | Wilsker D et al. | β | 2004 | β |
| Two related ARID family proteins are alternative subunits of human SWI/SNF complexes. | Wang X et al. | β | 2004 | β |
| A nuclear address with influence. | Shannon MF | β | 2003 | β |
| Human PLU-1 Has transcriptional repression properties and interacts with the developmental transcription factors BF-1 and PAX9. | Tan K et al. | β | 2003 | β |
| PLU-1, a transcriptional repressor and putative testis-cancer antigen, has a specific expression and localisation pattern during meiosis. | Madsen B et al. | β | 2003 | β |
| Recent advances in understanding chromatin remodeling by Swi/Snf complexes. | Martens JA et al. | β | 2003 | β |