Department of Radiation Oncology, University of Utah School of Medicine, Salt Lake City, UT 84112, USA.
Huntsman Cancer Institute, University of Utah School of Medicine, Salt Lake City, UT 84112, USA.
Nucleic Acids Res. 2023 Mar 21;51(5):2117-2136. doi: 10.1093/nar/gkad012.
The conserved complex of the Rad6 E2 ubiquitin-conjugating enzyme and the Bre1 E3 ubiquitin ligase catalyzes histone H2B monoubiquitination (H2Bub1), which regulates chromatin dynamics during transcription and other nuclear processes. Here, we report a crystal structure of Rad6 and the non-RING domain N-terminal region of Bre1, which shows an asymmetric homodimer of Bre1 contacting a conserved loop on the Rad6 'backside'. This contact is distant from the Rad6 catalytic site and is the location of mutations that impair telomeric silencing in yeast. Mutational analyses validated the importance of this contact for the Rad6-Bre1 interaction, chromatin-binding dynamics, H2Bub1 formation and gene expression. Moreover, the non-RING N-terminal region of Bre1 is sufficient to confer nucleosome binding ability to Rad6 in vitro. Interestingly, Rad6 P43L protein, an interaction interface mutant and equivalent to a cancer mutation in the human homolog, bound Bre1 5-fold more tightly than native Rad6 in vitro, but showed reduced chromatin association of Bre1 and reduced levels of H2Bub1 in vivo. These surprising observations imply conformational transitions of the Rad6-Bre1 complex during its chromatin-associated functional cycle, and reveal the differential effects of specific disease-relevant mutations on the chromatin-bound and unbound states. Overall, our study provides structural insights into Rad6-Bre1 interaction through a novel interface that is important for their biochemical and biological responses.
保守的 Rad6 E2 泛素结合酶和 Bre1 E3 泛素连接酶复合物催化组蛋白 H2B 单泛素化(H2Bub1),这调节转录和其他核过程中的染色质动力学。在这里,我们报告了 Rad6 和 Bre1 的非环结构域 N 端区域的晶体结构,其显示了 Bre1 的不对称同二聚体与 Rad6“背面”上的保守环接触。这种接触远离 Rad6 催化位点,是导致酵母中端粒沉默受损的突变位置。突变分析验证了这种接触对于 Rad6-Bre1 相互作用、染色质结合动力学、H2Bub1 形成和基因表达的重要性。此外,Bre1 的非环 N 端区域足以在体外赋予 Rad6 核小体结合能力。有趣的是,Rad6 P43L 蛋白,一种相互作用界面突变体,相当于人类同源物中的癌症突变,在体外比天然 Rad6 结合 Bre1 紧密 5 倍,但在体内显示出 Bre1 与染色质的结合减少和 H2Bub1 水平降低。这些令人惊讶的观察结果表明,在其与染色质相关的功能循环期间,Rad6-Bre1 复合物发生构象转变,并揭示了特定疾病相关突变对染色质结合和未结合状态的不同影响。总体而言,我们的研究通过一个重要的新界面提供了 Rad6-Bre1 相互作用的结构见解,这对于它们的生化和生物学反应很重要。