EMD-37123
Rpd3S in complex with nucleosome with H3K36MLA modification, H3K9Q mutation and 187bp DNA
EMD-37123
Single-particle2.9 Å
Deposition: 09/08/2023Map released: 13/09/2023
Last modified: 02/07/2025
Sample Organism:
Saccharomyces cerevisiae,
Xenopus laevis,
synthetic construct
Sample: H3K9 deacetylation state of Rpd3S-NCP (187bp/MLA/K9Q)
Fitted models: 8kd3
Deposition Authors: Dong S, Li H, Wang M, Rasheed N, Zou B, Gao X, Guan J, Li W, Zhang J, Wang C, Zhou N, Shi X, Li M, Zhou M, Huang J, Li H, Zhang Y, Wong KH, Zhang X
,
Chao WCH
,
He J
Sample: H3K9 deacetylation state of Rpd3S-NCP (187bp/MLA/K9Q)
Fitted models: 8kd3
Deposition Authors: Dong S, Li H, Wang M, Rasheed N, Zou B, Gao X, Guan J, Li W, Zhang J, Wang C, Zhou N, Shi X, Li M, Zhou M, Huang J, Li H, Zhang Y, Wong KH, Zhang X
,
Chao WCH
,
He J
Structural basis of nucleosome deacetylation and DNA linker tightening by Rpd3S histone deacetylase complex.
Dong S,
Li H,
Wang M,
Rasheed N,
Zou B,
Gao X,
Guan J,
Li W,
Zhang J,
Wang C,
Zhou N,
Shi X,
Li M,
Zhou M,
Huang J,
Li H,
Zhang Y,
Wong KH,
Zhang X
,
Chao WCH
,
He J
(2023) Cell Res , 33 , 790 - 801
,
Chao WCH
,
He J
(2023) Cell Res , 33 , 790 - 801
Grant Support:
- National Natural Science Foundation of China (NSFC): NSFC U20A2013 (China)
- National Natural Science Foundation of China (NSFC): 32241021 (China)
- National Natural Science Foundation of China (NSFC): 32170189 (China)
- Other government: MYRG2018-00221-FHS
- Other government: 0009/2018/A1
- Other government: 0032/2021/A1
- Other government: 202102080156
- Other government: 2019QN01Y051
