A conserved RAD6-MDM2 ubiquitin ligase machinery targets histone chaperone ASF1A in tumorigenesis

保守的 RAD6-MDM2 泛素连接酶机制在肿瘤发生中靶向组蛋白伴侣 ASF1A

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作者:Chen Wang, Jian-Feng Chang, Hongli Yan, Da-Liang Wang, Yan Liu, Yuanya Jing, Meng Zhang, Yu-Long Men, Dongdong Lu, Xiao-Mei Yang, Su Chen, Fang-Lin Sun

Abstract

Chromatin is a highly organized and dynamic structure in eukaryotic cells. The change of chromatin structure is essential in many cellular processes, such as gene transcription, DNA damage repair and others. Anti-silencing function 1 (ASF1) is a histone chaperone that participates in chromatin higher-order organization and is required for appropriate chromatin assembly. In this study, we identified the E2 ubiquitin-conjugating enzyme RAD6 as an evolutionary conserved interacting protein of ASF1 in D. melanogaster and H. sapiens that promotes the turnover of ASF1A by cooperating with a well-known E3 ligase, MDM2, via ubiquitin-proteasome pathway in H. sapiens. Further functional analyses indicated that the interplay between RAD6 and ASF1A associates with tumorigenesis. Together, these data suggest that the RAD6-MDM2 ubiquitin ligase machinery is critical for the degradation of chromatin-related proteins.

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