The SWI/SNF family of ATP-dependent chromatin remodelers: similar mechanisms for diverse functions.
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Summary
Although both types of complexes have similar subunit composition and chromatin remodeling activity in vitro, they cannot replace each other during transcription mediated by specific activators, so each remodeler probably works with a specific set of activators during gene activation.
- Type
- review
- Published
- 2003-01-01
- Cited by
- 122
- References
- 123
- OpenAlex
- https://openalex.org/W40230220
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:35269574
Keywords
SWI/SNF, Chromatin structure remodeling (RSC) complex, Chromatin, Biology, Chromatin remodeling
References
- Nucleosome disruption and enhancement of activator binding by a human SW1/SNF complex
- A human homologue of Saccharomyces cerevisiae SNF2/SWI2 and Drosophila brm genes potentiates transcriptional activation by the glucocorticoid receptor.
- The hbrm and BRG‐1 proteins, components of the human SNF/SWI complex, are phosphorylated and excluded from the condensed chromosomes during mitosis.
- Nucleosome mobilization catalysed by the yeast SWI/SNF complex
- Cytoplasmic recruitment of INI1 and PML on incoming HIV preintegration complexes: interference with early steps of viral replication.
- Inhibition of HIV-1 virion production by a transdominant mutant of integrase interactor 1
- c-MYC interacts with INI1/hSNF5 and requires the SWI/SNF complex for transactivation function
- Chromatin remodelling by the glucocorticoid receptor requires the BRG1 complex
- Interaction of E1 and hSNF5 proteins stimulates replication of human papillomavirus DNA
- Structure and ligand of a histone acetyltransferase bromodomain
- The Activity of Mammalian brm/SNF2α Is Dependent on a High-Mobility-Group Protein I/Y-Like DNA Binding Domain
- brahma: a regulator of Drosophila homeotic genes structurally related to the yeast transcriptional activator SNF2/SWI2.
- Genetic analysis of the brahma gene of Drosophila melanogaster and polytene chromosome subdivisions 72AB.
- Purification and biochemical heterogeneity of the mammalian SWI‐SNF complex.
- Sfh1p, a component of a novel chromatin-remodeling complex, is required for cell cycle progression
- The Drosophila trithorax group proteins BRM, ASH1 and ASH2 are subunits of distinct protein complexes.
- Differential preimplantation regulation of two mouse homologues of the yeast SWI2 protein
- Nps1/Sth1p, a component of an essential chromatin‐remodeling complex of Saccharomyces cerevisiae, is required for the maximal expression of early meiotic genes
- Components of the SWI/SNF complex are required for asymmetric cell division in C. elegans.
- The dermatomyositis-specific autoantigen Mi2 is a component of a complex containing histone deacetylase and nucleosome remodeling activities.
Cited by
- TbISWI and its role in transcriptional control in Trypanosoma brucei
- The chromatin remodeling complex Ino80 and its role in stress gene transcription
- Transcriptional Regulation During Adipocyte Differentiation: A Role for SWI/SNF Chromatin Remodeling Enzymes: A Dissertation
- Changing the DNA landscape: putting a SPN on chromatin.
- Chromatin architecture and the orchestration of gene expression: cell systems to explore epigenetic gene control
- DNA damage repair and transcription
- Purification and functional analysis of the mammalian SWI/SNF-family of chromatin-remodeling complexes.
- Role of Epigenetic Modifications and Dexras1 in glucocorticoid regulation of growth hormone expression
- Etude structurale et fonctionnelle de la variante d'histone H2AZ
- Mechanisms of sister chromatid pairing.
- Protein Complexes that Modify Chromatin
- Establishment and regulation of chromatin domains: mechanistic insights from studies of hemoglobin synthesis.
- ATP-dependent Remodelling of Linker Histone-Containing Nucleosomal Fibres
- The SWI/SNF complex — chromatin and cancer
- Axl promotes cell invasion by inducing MMP-9 activity through activation of NF-κB and Brg-1
- Genetic analysis of RSC58, which encodes a component of a yeast chromatin remodeling complex, and interacts with the transcription factor Swi6
- Ikaros in B cell development and function.
- F-actin-dependent Insolubility of Chromatin-modifying Components*
- The Swi2/Snf2 Bromodomain Is Important for the Full Binding and Remodeling Activity of the SWI/SNF Complex on H3‐ and H4‐acetylated Nucleosomes
- The Swi2/Snf2 Bromodomain Is Required for the Displacement of SAGA and the Octamer Transfer of SAGA-acetylated Nucleosomes*
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