Department of Biotechnology and Bioinformatics, School of Life Sciences, University of Hyderabad, Hyderabad, Telangana, India.
Department of Chemistry, Technical University of Munich, Garching, Germany.
J Biol Chem. 2024 Jun;300(6):107342. doi: 10.1016/j.jbc.2024.107342. Epub 2024 May 3.
Posttranslational modifications of Hsp90 are known to regulate its in vivo chaperone functions. Here, we demonstrate that the lysine acetylation-deacetylation dynamics of Hsp82 is a major determinant in DNA repair mediated by Rad51. We uncover that the deacetylated lysine 27 in Hsp82 dictates the formation of the Hsp82-Aha1-Rad51 complex, which is crucial for client maturation. Intriguingly, Aha1-Rad51 complex formation is not dependent on Hsp82 or its acetylation status; implying that Aha1-Rad51 association precedes the interaction with Hsp82. The DNA damage sensitivity of Hsp82 (K27Q/K27R) mutants are epistatic to the loss of the (de)acetylase hda1Δ; reinforcing the importance of the reversible acetylation of Hsp82 at the K27 position. These findings underscore the significance of the cross talk between a specific Hsp82 chaperone modification code and the cognate cochaperones in a client-specific manner. Given the pivotal role that Rad51 plays during DNA repair in eukaryotes and particularly in cancer cells, targeting the Hda1-Hsp90 axis could be explored as a new therapeutic approach against cancer.
热休克蛋白 90(Hsp90)的翻译后修饰已知可调节其体内伴侣功能。在这里,我们证明 Hsp82 的赖氨酸乙酰化-去乙酰化动力学是 Rad51 介导的 DNA 修复的主要决定因素。我们发现 Hsp82 中去乙酰化的赖氨酸 27 决定了 Hsp82-Aha1-Rad51 复合物的形成,这对于客户成熟至关重要。有趣的是,Aha1-Rad51 复合物的形成不依赖于 Hsp82 或其乙酰化状态;这意味着 Aha1-Rad51 缔合先于与 Hsp82 的相互作用。Hsp82(K27Q/K27R)突变体的 DNA 损伤敏感性与(去)乙酰酶 hda1Δ 的缺失是上位的;这强调了 Hsp82 在 K27 位置的可逆乙酰化在特定 Hsp82 伴侣修饰密码子和同源共伴侣之间以特定于客户的方式进行交流的重要性。鉴于 Rad51 在真核生物特别是癌细胞中的 DNA 修复过程中所起的关键作用,靶向 Hda1-Hsp90 轴可能被探索为一种新的抗癌治疗方法。