de Vivo Angelo, Song Hongseon, Lee Yujin, Tirado-Class Neysha, Sanchez Anthony, Westerheide Sandy, Dungrawala Huzefa, Kee Younghoon
Department of Molecular Biosciences, College of Arts and Sciences, University of South Florida, Tampa, FL 33647, USA.
Department of New Biology, Daegu Gyeongbuk Institute of Science and Technology (DGIST), 333 Techno-Joongang-daero, Dalseong-gun, Daegu 42988, Republic of Korea.
Nucleic Acids Res. 2023 Oct 27;51(19):10467-10483. doi: 10.1093/nar/gkad732.
Proper regulation of replication fork progression is important for genomic maintenance. Subverting the transcription-induced conflicts is crucial in preserving the integrity of replication forks. Various chromatin remodelers, such as histone chaperone and histone deacetylases are known to modulate replication stress, but how these factors are organized or collaborate are not well understood. Here we found a new role of the OTUD5 deubiquitinase in limiting replication stress. We found that OTUD5 is recruited to replication forks, and its depletion causes replication fork stress. Through its C-terminal disordered tail, OTUD5 assembles a complex containing FACT, HDAC1 and HDAC2 at replication forks. A cell line engineered to specifically uncouple FACT interaction with OTUD5 exhibits increases in FACT loading onto chromatin, R-loop formation, and replication fork stress. OTUD5 mediates these processes by recruiting and stabilizing HDAC1 and HDAC2, which decreases H4K16 acetylation and FACT recruitment. Finally, proteomic analysis revealed that the cells with deficient OTUD5-FACT interaction activates the Fanconi Anemia pathway for survival. Altogether, this study identified a new interaction network among OTUD5-FACT-HDAC1/2 that limits transcription-induced replication stress.
正确调控复制叉的进展对于基因组维护至关重要。消除转录诱导的冲突对于维持复制叉的完整性至关重要。各种染色质重塑因子,如组蛋白伴侣和组蛋白去乙酰化酶,已知可调节复制应激,但这些因子如何组织或协作尚不清楚。在这里,我们发现了OTUD5去泛素化酶在限制复制应激中的新作用。我们发现OTUD5被招募到复制叉,其缺失会导致复制叉应激。通过其C端无序尾巴,OTUD5在复制叉处组装了一个包含FACT、HDAC1和HDAC2的复合物。经过基因工程改造以特异性解除FACT与OTUD5相互作用的细胞系,在FACT加载到染色质上、R环形成和复制叉应激方面均有所增加。OTUD5通过招募和稳定HDAC1和HDAC2来介导这些过程,这会降低H4K16乙酰化和FACT招募。最后,蛋白质组学分析表明,OTUD5-FACT相互作用缺陷的细胞激活范可尼贫血途径以存活。总之,这项研究确定了OTUD5-FACT-HDAC1/2之间一个新的相互作用网络,该网络可限制转录诱导的复制应激。