Center for Molecular Biology of Heidelberg University (ZMBH), DKFZ-ZMBH-Alliance, 69120 Heidelberg, Germany.
National Center for Biotechnology Information, National Library of Medicine, National Institutes of Health, Bethesda, MD 20894, USA.
Cell Rep. 2023 Sep 26;42(9):113100. doi: 10.1016/j.celrep.2023.113100. Epub 2023 Sep 6.
In ribosome-associated quality control (RQC), nascent polypeptides produced by interrupted translation are modified with C-terminal polyalanine tails ("Ala-tails") that function outside ribosomes to induce ubiquitylation by E3 ligases Pirh2 (p53-induced RING-H2 domain-containing) or CRL2 (Cullin-2 RING ligase2)-KLHDC10. Here, we investigate the molecular basis of Ala-tail function using biochemical and in silico approaches. We show that Pirh2 and KLHDC10 directly bind to Ala-tails and that structural predictions identify candidate Ala-tail-binding sites, which we experimentally validate. The degron-binding pockets and specific pocket residues implicated in Ala-tail recognition are conserved among Pirh2 and KLHDC10 homologs, suggesting that an important function of these ligases across eukaryotes is in targeting Ala-tailed substrates. Moreover, we establish that the two Ala-tail-binding pockets have convergently evolved, either from an ancient module of bacterial provenance (Pirh2) or via tinkering of a widespread C-degron-recognition element (KLHDC10). These results shed light on the recognition of a simple degron sequence and the evolution of Ala-tail proteolytic signaling.
在核糖体相关质量控制 (RQC) 中,翻译中断产生的新生多肽被带有 C 末端多丙氨酸尾巴(“丙氨酸尾巴”)修饰,这些尾巴在核糖体外发挥作用,诱导 E3 连接酶 Pirh2(p53 诱导的 RING-H2 结构域包含)或 CRL2(Cullin-2 RING 连接酶 2)-KLHDC10 的泛素化。在这里,我们使用生化和计算方法研究了丙氨酸尾巴功能的分子基础。我们表明,Pirh2 和 KLHDC10 直接与丙氨酸尾巴结合,结构预测确定了候选的丙氨酸尾巴结合位点,我们通过实验验证了这些位点。与 Pirh2 和 KLHDC10 同源物相关的 degron 结合口袋和特异性口袋残基与丙氨酸尾巴识别有关,这表明这些连接酶在真核生物中的一个重要功能是靶向带有丙氨酸尾巴的底物。此外,我们确定了两个丙氨酸尾巴结合口袋是从细菌来源的古老模块(Pirh2)或通过广泛的 C 降解物识别元件(KLHDC10)的修补而趋同进化而来的。这些结果阐明了对简单降解物序列的识别以及丙氨酸尾巴蛋白水解信号的进化。