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- Zhou, Zheng
- 作成者
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- Zheng Zhou
- 寄与者
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- Dai, Linchang
- 寄与者
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- Dai, Yaxin
- 寄与者
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- Han, Jinhua
- 寄与者
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- Huang, Yan
- 寄与者
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- Wang, Longge
- 寄与者
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- Huang, Jun
- 寄与者
メタデータ
- 公開日
- 2021-01-01
- DOI
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- 10.17632/xrtrb4vsbx.1
- 10.17632/xrtrb4vsbx
- 公開者
- Mendeley
- データ作成者 (e-Rad)
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- Zhou, Zheng
説明
The BRCA1-BARD1 complex directs the DNA double-strand break (DSB) repair pathway choice to error-free homologous recombination (HR) during the S-G2 stages. Targeting BRCA1-BARD1 to the DSB-proximal sites requires the BARD1-mediated nucleosome interaction and histone mark recognition. Here, we report the cryo-EM structure of BARD1 bound to a ubiquitinated nucleosome core particle (NCPUb) at 3.1 Å resolution and illustrate how BARD1 simultaneously recognizes the DNA damage-induced mark H2AK15ub and DNA replication-associated mark H4K20me0 on the nucleosome. In vitro and in vivo analyses reveal that the BARD1-NCPUb complex is stabilized by BARD1-nucleosome interaction, BARD1-ubiquitin interaction, and BARD1 ARD domain-BARD1 BRCT domain interaction, and abrogating these interactions is detrimental to HR activity. We further identify multiple disease-causing BARD1 mutations that disrupt BARD1-NCPUb interactions and hence impair HR. Together, this study elucidates the mechanism of BRCA1-BARD1 complex recruitment and retention by DSB-flanking nucleosomes and sheds important light on cancer therapeutic avenues.