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1.
Nat Struct Mol Biol ; 31(2): 266-274, 2024 Feb.
Article in English | MEDLINE | ID: mdl-38177688

ABSTRACT

Nucleosomes are basic repeating units of chromatin and form regularly spaced arrays in cells. Chromatin remodelers alter the positions of nucleosomes and are vital in regulating chromatin organization and gene expression. Here we report the cryo-EM structure of chromatin remodeler ISW1a complex from Saccharomyces cerevisiae bound to the dinucleosome. Each subunit of the complex recognizes a different nucleosome. The motor subunit binds to the mobile nucleosome and recognizes the acidic patch through two arginine residues, while the DNA-binding module interacts with the entry DNA at the nucleosome edge. This nucleosome-binding mode provides the structural basis for linker DNA sensing of the motor. Notably, the Ioc3 subunit recognizes the disk face of the adjacent nucleosome through interacting with the H4 tail, the acidic patch and the nucleosomal DNA, which plays a role in the spacing activity in vitro and in nucleosome organization and cell fitness in vivo. Together, these findings support the nucleosome spacing activity of ISW1a and add a new mode of nucleosome remodeling in the context of a chromatin environment.


Subject(s)
Nucleosomes , Saccharomyces cerevisiae Proteins , Nucleosomes/metabolism , DNA-Binding Proteins/metabolism , Saccharomyces cerevisiae Proteins/metabolism , Chromatin Assembly and Disassembly , Adenosine Triphosphatases/metabolism , Saccharomyces cerevisiae/metabolism , Chromatin/metabolism , DNA/metabolism
3.
Science ; 366(6467): 838-843, 2019 11 15.
Article in English | MEDLINE | ID: mdl-31672915

ABSTRACT

The RSC complex remodels chromatin structure and regulates gene transcription. We used cryo-electron microscopy to determine the structure of yeast RSC bound to the nucleosome. RSC is delineated into the adenosine triphosphatase motor, the actin-related protein module, and the substrate recruitment module (SRM). RSC binds the nucleosome mainly through the motor, with the auxiliary subunit Sfh1 engaging the H2A-H2B acidic patch to enable nucleosome ejection. SRM is organized into three substrate-binding lobes poised to bind their respective nucleosomal epitopes. The relative orientations of the SRM and the motor on the nucleosome explain the directionality of DNA translocation and promoter nucleosome repositioning by RSC. Our findings shed light on RSC assembly and functionality, and they provide a framework to understand the mammalian homologs BAF/PBAF and the Sfh1 ortholog INI1/BAF47, which are frequently mutated in cancers.


Subject(s)
Cell Cycle Proteins/chemistry , Chromosomal Proteins, Non-Histone/chemistry , DNA-Binding Proteins/chemistry , Nucleosomes/chemistry , Saccharomyces cerevisiae Proteins/chemistry , Transcription Factors/chemistry , Actins/chemistry , Chromatin/chemistry , Cryoelectron Microscopy , Protein Domains , SMARCB1 Protein/chemistry
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