Departments of Oncological Sciences.
Department of Biochemistry, Schulich School of Medicine and Dentistry, University of Western Ontario, London, ON, Canada N6A 5CI;
Proc Natl Acad Sci U S A. 2014 Jun 10;111(23):8434-9. doi: 10.1073/pnas.1407849111. Epub 2014 May 27.
Lysine 48 (K48)-polyubiquitination is the predominant mechanism for mediating selective protein degradation, but the underlying molecular basis of selecting ubiquitin (Ub) K48 for linkage-specific chain synthesis remains elusive. Here, we present biochemical, structural, and cell-based evidence demonstrating a pivotal role for the Ub Y59-E51 loop in supporting K48-polyubiquitination. This loop is established by a hydrogen bond between Ub Y59's hydroxyl group and the backbone amide of Ub E51, as substantiated by NMR spectroscopic analysis. Loop residues Y59 and R54 are specifically required for the receptor activity enabling K48 to attack the donor Ub-E2 thiol ester in reconstituted ubiquitination catalyzed by Skp1-Cullin1-F-box (SCF)(βTrCP) E3 ligase and Cdc34 E2-conjugating enzyme. When introduced into mammalian cells, loop-disruptive mutant Ub(R54A/Y59A) diminished the production of K48-polyubiquitin chains. Importantly, conditional replacement of human endogenous Ub by Ub(R54A/Y59A) or Ub(K48R) yielded profound apoptosis at a similar extent, underscoring the global impact of the Ub Y59-E51 loop in cellular K48-polyubiquitination. Finally, disulfide cross-linking revealed interactions between the donor Ub-bound Cdc34 acidic loop and the Ub K48 site, as well as residues within the Y59-E51 loop, suggesting a mechanism in which the Ub Y59-E51 loop helps recruit the E2 acidic loop that aligns the receptor Ub K48 to the donor Ub for catalysis.
赖氨酸 48(K48)-多聚泛素化是介导选择性蛋白降解的主要机制,但选择泛素(Ub)K48 进行连接特异性链合成的潜在分子基础仍然难以捉摸。在这里,我们提供生化、结构和基于细胞的证据,证明 Ub Y59-E51 环在支持 K48-多聚泛素化中的关键作用。通过 NMR 光谱分析证实,该环由 Ub Y59 的羟基与 Ub E51 的骨架酰胺之间的氢键形成。Loop 残基 Y59 和 R54 特异性需要受体活性,使 K48 能够攻击 Skp1-Cullin1-F-box(SCF)(βTrCP)E3 连接酶和 Cdc34 E2 缀合酶催化的再构成泛素化中的供体 Ub-E2 硫醇酯。当引入哺乳动物细胞时,破坏环的突变体 Ub(R54A/Y59A)减少了 K48-多泛素链的产生。重要的是,通过 Ub(R54A/Y59A)或 Ub(K48R)条件性替换人内源性 Ub 产生了类似程度的强烈细胞凋亡,强调了 Ub Y59-E51 环在细胞 K48-多泛素化中的全局影响。最后,二硫键交联揭示了供体 Ub 结合的 Cdc34 酸性环与 Ub K48 位点以及 Y59-E51 环内残基之间的相互作用,表明 Ub Y59-E51 环有助于招募 E2 酸性环,使受体 Ub K48 与供体 Ub 对齐以进行催化的机制。