Ohkuni Kentaro, Levy-Myers Reuben, Warren Jack, Au Wei-Chun, Takahashi Yoshimitsu, Baker Richard E, Basrai Munira A
Genetics Branch, Center for Cancer Research, National Cancer Institute, National Institute of Health, Bethesda, Maryland 20892.
Biology Department, The College of William & Mary, Williamsburg, Virginia 23187.
G3 (Bethesda). 2018 Mar 28;8(4):1215-1223. doi: 10.1534/g3.117.300419.
Stringent regulation of cellular levels of evolutionarily conserved centromeric histone H3 variant (CENP-A in humans, CID in flies, Cse4 in yeast) prevents its mislocalization to non-centromeric chromatin. Overexpression and mislocalization of CENP-A has been observed in cancers and leads to aneuploidy in yeast, flies, and human cells. Ubiquitin-mediated proteolysis of Cse4 by E3 ligases such as Psh1 and Sumo-Targeted Ubiquitin Ligase (STUbL) Slx5 prevent mislocalization of Cse4. Previously, we identified Siz1 and Siz2 as the major E3 ligases for sumoylation of Cse4. In this study, we have identified lysine 65 (K65) in Cse4 as a site that regulates sumoylation and ubiquitin-mediated proteolysis of Cse4 by Slx5. Strains expressing exhibit reduced levels of sumoylated and ubiquitinated Cse4 Furthermore, co-immunoprecipitation experiments reveal reduced interaction of cse4 K65R with Slx5, leading to increased stability and mislocalization of cse4 K65R under normal physiological conditions. Based on the increased stability of cse4 K65R in strains but not in strains, we conclude that Slx5 targets sumoylated Cse4 K65 for ubiquitination-mediated proteolysis independent of Psh1. In summary, we have identified and characterized the physiological role of Cse4 K65 in sumoylation, ubiquitin-mediated proteolysis, and localization of Cse4 for genome stability.
对进化保守的着丝粒组蛋白H3变体(人类中的CENP-A、果蝇中的CID、酵母中的Cse4)细胞水平的严格调控可防止其错误定位于非着丝粒染色质。在癌症中已观察到CENP-A的过表达和错误定位,并导致酵母、果蝇和人类细胞中的非整倍体。E3连接酶如Psh1和SUMO靶向泛素连接酶(STUbL)Slx5对Cse4进行泛素介导的蛋白水解可防止Cse4的错误定位。此前,我们鉴定出Siz1和Siz2是Cse4 SUMO化的主要E3连接酶。在本研究中,我们确定Cse4中的赖氨酸65(K65)是一个调节Cse4 SUMO化和Slx5介导的泛素介导蛋白水解的位点。表达 的菌株中,Cse4的SUMO化和泛素化水平降低。此外,免疫共沉淀实验表明cse4 K65R与Slx5的相互作用减少,导致cse4 K65R在正常生理条件下稳定性增加和错误定位。基于cse4 K65R在 菌株中而非 菌株中稳定性增加,我们得出结论,Slx5靶向SUMO化的Cse4 K65进行泛素化介导的蛋白水解,且不依赖于Psh1。总之,我们已经鉴定并表征了Cse4 K65在SUMO化、泛素介导的蛋白水解以及Cse4定位以维持基因组稳定性方面的生理作用。