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缺乏典型降解结构域的核小体外组蛋白复合物的APC/C介导的泛素化

APC/C-mediated ubiquitylation of extranucleosomal histone complexes lacking canonical degrons.

作者信息

Skrajna Aleksandra, Bodrug Tatyana, Martinez-Chacin Raquel C, Fisher Caleb B, Welsh Kaeli A, Simmons Holly C, Arteaga Eyla C, Simmons Jake M, Nasr Mohamed A, LaPak Kyle M, Nguyen Anh, Huynh Mai T, Fargo Isabel, Welfare Joshua G, Zhao Yani, Lawrence David S, Goldfarb Dennis, Brown Nicholas G, McGinty Robert K

机构信息

Division of Chemical Biology and Medicinal Chemistry and Center for Integrated Chemical Biology and Drug Discovery, UNC Eshelman School of Pharmacy, University of North Carolina, Chapel Hill, NC, USA.

Lineberger Comprehensive Cancer Center, University of North Carolina, Chapel Hill, NC, USA.

出版信息

Nat Commun. 2025 Mar 15;16(1):2561. doi: 10.1038/s41467-025-57384-7.

Abstract

Non-degradative histone ubiquitylation plays a myriad of well-defined roles in the regulation of gene expression and choreographing DNA damage repair pathways. In contrast, the contributions of degradative histone ubiquitylation on genomic processes has remained elusive. Recently, the APC/C has been shown to ubiquitylate histones to regulate gene expression in pluripotent cells, but the molecular mechanism is unclear. Here we show that despite directly binding to the nucleosome through subunit APC3, the APC/C is unable to ubiquitylate nucleosomal histones. In contrast, extranucleosomal H2A/H2B and H3/H4 complexes are broadly ubiquitylated by the APC/C in an unexpected manner. Using a combination of cryo-electron microscopy (cryo-EM) and biophysical and enzymatic assays, we demonstrate that APC8 and histone tails direct APC/C-mediated polyubiquitylation of core histones in the absence of traditional APC/C substrate degron sequences. Taken together, our work implicates APC/C-nucleosome tethering in the degradation of diverse chromatin-associated proteins and extranucleosomal histones for the regulation of transcription and the cell cycle and for preventing toxicity due to excess histone levels.

摘要

非降解性组蛋白泛素化在基因表达调控和编排DNA损伤修复途径中发挥着众多明确的作用。相比之下,降解性组蛋白泛素化对基因组过程的贡献仍不清楚。最近,已表明后期促进复合物/细胞周期体(APC/C)可泛素化组蛋白以调控多能细胞中的基因表达,但其分子机制尚不清楚。在这里,我们表明尽管APC/C通过亚基APC3直接与核小体结合,但它无法泛素化核小体组蛋白。相反,APC/C以意想不到的方式广泛泛素化核小体外的H2A/H2B和H3/H4复合物。通过结合冷冻电子显微镜(cryo-EM)以及生物物理和酶学分析,我们证明在没有传统APC/C底物降解结构域序列的情况下,APC8和组蛋白尾巴指导APC/C介导的核心组蛋白多聚泛素化。综上所述,我们的工作表明APC/C与核小体的拴系作用参与了多种与染色质相关的蛋白质和核小体外组蛋白的降解,以调控转录和细胞周期,并防止由于组蛋白水平过高而产生的毒性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/70f3/11910654/c5f7d4cfe8f6/41467_2025_57384_Fig1_HTML.jpg

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