Cryo-EM structure and functional analysis of the chromatin remodeler RSF

Author:

Zhang Jiale,Zhao Heyu,Zou Binqian,Li Huadong,Dong Shuqi,Guan Jiali,Wang Chi,Li Weijie,Liu Yutong,Chen Yingying,Rasheed Nadia,He Jun

Abstract

The RSF complex belongs to the ISWI chromatin-remodeling family and is composed of two subunits: RSF1 (remodeling and spacing factor 1) and SNF2h (sucrose nonfermenting protein 2 homolog). The RSF complex participates in nucleosome spacing and assembly, and subsequently promotes nucleosome maturation. Although SNF2h has been extensively studied in the last few years, the structural and functional properties of the remodeler RSF1 still remain vague. Here, a cryo-EM structure of the RSF–nucleosome complex is reported. The 3D model shows a two-lobe architecture of RSF, and the structure of the RSF–nucleosome (flanked with linker DNA) complex shows that the RSF complex moves the DNA away from the histone octamer surface at the DNA-entry point. Additionally, a nucleosome-sliding assay and a restriction-enzyme accessibility assay show that the RSF1 subunit may cause changes in the chromatin-remodeling properties of SNF2h. As a `nucleosome ruler', the results of an RSF–dinucleosome binding affinity test led to the proposal that the critical distance that RSF `measures' between two nucleosomes is about 24 base pairs.

Funder

National Natural Science Foundation of China

China Postdoctoral Science Foundation

Guangzhou Science and Technology Plan Project Basic Research Plan

International Cooperation and Exchange Programme

R&D Program of Guangzhou Key Laboratory

Science and Technology Planning Project of Guangdong Province

Publisher

International Union of Crystallography (IUCr)

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