Cryo-EM and biochemical analyses of the nucleosome containing the human histone H3 variant H3.8

Author:

Hirai Seiya12,Kujirai Tomoya1,Akatsu Munetaka12,Ogasawara Mitsuo1,Ehara Haruhiko3,Sekine Shun-ichi3,Ohkawa Yasuyuki4,Takizawa Yoshimasa1,Kurumizaka Hitoshi123

Affiliation:

1. The University of Tokyo Laboratory of Chromatin Structure and Function, Institute for Quantitative Biosciences, , 1-1-1 Yayoi, Bunkyo-ku, Tokyo 113-0032, Japan

2. The University of Tokyo Department of Biological Sciences, Graduate School of Science, , 1-1-1 Yayoi, Bunkyo-ku, Tokyo 113-0032, Japan

3. RIKEN Center for Biosystems Dynamics Research Laboratory for Transcription Structural Biology, , 1-7-22 Suehiro-cho, Tsurumi-ku, Yokohama 230-0045, Japan

4. Kyushu University Division of Transcriptomics, Medical Institute of Bioregulation, , 3-1-1 Maidashi, Higashi, Fukuoka 812-0054, Japan

Abstract

Abstract Histone H3.8 is a non-allelic human histone H3 variant derived from H3.3. H3.8 reportedly forms an unstable nucleosome, but its structure and biochemical characteristics have not been revealed yet. In the present study, we reconstituted the nucleosome containing H3.8. Consistent with previous results, the H3.8 nucleosome is thermally unstable as compared to the H3.3 nucleosome. The entry/exit DNA regions of the H3.8 nucleosome are more accessible to micrococcal nuclease than those of the H3.3 nucleosome. Nucleosome transcription assays revealed that the RNA polymerase II (RNAPII) pausing around the superhelical location (SHL) −1 position, which is about 60 base pairs from the nucleosomal DNA entry site, is drastically alleviated. On the other hand, the RNAPII pausing around the SHL(−5) position, which is about 20 base pairs from the nucleosomal DNA entry site, is substantially increased. The cryo-electron microscopy structure of the H3.8 nucleosome explains the mechanisms of the enhanced accessibility of the entry/exit DNA regions, reduced thermal stability and altered RNAPII transcription profile.

Funder

Drug Discovery and Life Science Research (BINDS) from AMED

JST ERATO

JSPS KAKENHI

Publisher

Oxford University Press (OUP)

Subject

Molecular Biology,Biochemistry,General Medicine

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