首页> 美国卫生研究院文献>International Journal of Molecular Sciences >Cooperativity between the Ribosome-Associated Chaperone Ssb/RAC and the Ubiquitin Ligase Ltn1 in Ubiquitination of Nascent Polypeptides
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Cooperativity between the Ribosome-Associated Chaperone Ssb/RAC and the Ubiquitin Ligase Ltn1 in Ubiquitination of Nascent Polypeptides

机译:核糖体相关的伴侣SSB / RAC与泛塞多肽的泛素化的核心蛋白伴侣酶LTN1之间的合作效应

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摘要

Eukaryotic cells have evolved multiple mechanisms to detect and eliminate aberrant polypeptides. Co-translational protein surveillance systems play an important role in these mechanisms. These systems include ribosome-associated protein quality control (RQC) that detects aberrant nascent chains stalled on ribosomes and promotes their ubiquitination and degradation by the proteasome, and ribosome-associated chaperone Ssb/RAC, which ensures correct nascent chain folding. Despite the known function of RQC and Ssb/ribosome-associated complex (RAC) in monitoring the quality of newly generated polypeptides, whether they cooperate during initial stages of protein synthesis remains unexplored. Here, we provide evidence that Ssb/RAC and the ubiquitin ligase Ltn1, the major component of RQC, display genetic and functional cooperativity. Overexpression of Ltn1 rescues growth suppression of the yeast strain-bearing deletions of SSB genes during proteotoxic stress. Moreover, Ssb/RAC promotes Ltn1-dependent ubiquitination of nascent chains associated with 80S ribosomal particles but not with translating ribosomes. Consistent with this finding, quantitative western blot analysis revealed lower levels of Ltn1 associated with 80S ribosomes and with free 60S ribosomal subunits in the absence of Ssb/RAC. We propose a mechanism in which Ssb/RAC facilitates recruitment of Ltn1 to ribosomes, likely by detecting aberrations in nascent chains and leading to their ubiquitination and degradation.
机译:真核细胞已经进化了多种机制来检测和消除异常多肽。共转移蛋白监测系统在这些机制中起重要作用。这些系统包括核糖体相关的蛋白质质量控​​制(RQC),检测在核糖体上停滞的异常新生链,并通过蛋白酶体和核糖体相关的伴侣SSB / RAC促进其泛素化和降解,这确保了正确的新生链折叠。尽管RQC和SSB /核糖体相关复合物(RAC)的已知功能监测新生​​成的多肽的质量,但它们在蛋白质合成的初始阶段是否合作仍未开发。在这里,我们提供了SSB / RAC和泛素LigaseTTN1,RQC的主要成分,显示遗传和功能合作的证据。 LTN1的过表达抵押在蛋白毒性应力期间SSB基因的酵母应变抑制的生长抑制。此外,SSB / RAC促进LTN1依赖于染色链的悬垂与80S核糖体颗粒相关的脱脂链,但不具有平移核糖体。与该发现一致,定量Western印迹分析显示较低水平的LTN1与80S核糖体相关,并且在不存在SSB / RAC的情况下具有免费的60s核糖体亚基。我们提出了一种机制,其中SSB / RAC促进LTN1募集到核糖体,可能通过检测新生链中的畸变并导致其泛染和降解。

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