Hijacking the Chromatin Remodeling Machinery: Impact ofSWI/SNFPerturbations in Cancer
Bernard E. Weissman, Karen E. Knudsen
Abstract
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Bernard E. Weissman, Karen E. Knudsen
Abstract
Open-access reader
There is increasing evidence that alterations in chromatin remodeling play a significant role in human disease. The SWI/SNF chromatin remodeling complex family mobilizes nucleosomes and functions as a master regulator of gene expression and chromatin dynamics whose functional specificity is driven by combinatorial assembly of a central ATPase and association with 10 to 12 unique subunits. Although the biochemical consequence of SWI/SNF in model systems has been extensively reviewed, the present article focuses on the evidence linking SWI/SNF perturbations to cancer initiation and tumor progression in human disease.
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There is increasing evidence that alterations in chromatin remodeling play a significant role in human disease. The SWI/SNF chromatin remodeling complex family mobilizes nucleosomes and functions as a master regulator of gene expression and chromatin dynamics whose functional specificity is driven by combinatorial assembly of a central ATPase and association with 10 to 12 unique subunits. Although the biochemical consequence of SWI/SNF in model systems has been extensively reviewed, the present article focuses on the evidence linking SWI/SNF perturbations to cancer initiation and tumor progression in human disease.
Key concepts: SWI/SNF, Chromatin remodeling, Cancer, SMARCA4, Chromatin, Biology, Chromatin structure remodeling (RSC) complex, Cancer research