Department of Biological Sciences, University of Pittsburgh, Pittsburgh, PA, 15260, USA.
Bioessays. 2020 Jul;42(7):e2000002. doi: 10.1002/bies.202000002. Epub 2020 Jun 3.
The remodel the structure of chromatin (RSC) nucleosome remodeling complex is a conserved chromatin regulator with roles in chromatin organization, especially over nucleosome depleted regions therefore functioning in gene expression. Recent reports in Saccharomyces cerevisiae have identified specificities in RSC activity toward certain types of nucleosomes. RSC has now been shown to preferentially evict nucleosomes containing the histone variant H2A.Z in vitro. Furthermore, biochemical activities of distinct RSC complexes has been found to differ when their nucleosome substrate is partially unraveled. Mammalian BAF complexes, the homologs of yeast RSC and SWI/SNF complexes, are also linked to nucleosomes with H2A.Z, but this relationship may be complex and extent of conservation remains to be determined. The interplay of remodelers with specific nucleosome substrates and regulation of remodeler outcomes by nucleosome composition are tantalizing questions given the wave of structural data emerging for RSC and other SWI/SNF family remodelers.
重塑染色质结构(RSC)核小体重塑复合物是一种保守的染色质调节剂,在染色质组织中发挥作用,特别是在核小体缺失区域,因此在基因表达中发挥作用。最近在酿酒酵母中的报告确定了 RSC 对某些类型核小体的活性特异性。现在已经表明,RSC 优先从体外含有组蛋白变体 H2A.Z 的核小体中逐出。此外,当它们的核小体底物部分解开时,不同的 RSC 复合物的生化活性已被发现不同。哺乳动物 BAF 复合物是酵母 RSC 和 SWI/SNF 复合物的同源物,也与含有 H2A.Z 的核小体相关,但这种关系可能很复杂,其保守程度仍有待确定。鉴于 RSC 和其他 SWI/SNF 家族重塑剂的结构数据不断涌现,重塑剂与特定核小体底物的相互作用以及重塑剂结果受核小体组成的调节是一个诱人的问题。