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首页> 外文期刊>Molecular biology of the cell >The ribosome-bound quality control complex remains associated to aberrant peptides during their proteasomal targeting and interacts with Tom1 to limit protein aggregation
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The ribosome-bound quality control complex remains associated to aberrant peptides during their proteasomal targeting and interacts with Tom1 to limit protein aggregation

机译:核糖体的质量控制复合物在其蛋白酶体靶向过程中与异常肽相关,并与Tom1相互作用以限制蛋白质聚集

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Protein quality control mechanisms eliminate defective polypeptides to ensure proteostasis and to avoid the toxicity of protein aggregates. In eukaryotes, the ribosome-bound quality control (RQC) complex detects aberrant nascent peptides that remain stalled in 60S ribosomal particles due to a dysfunction in translation termination. The RQC complex polyubiquitylates aberrant polypeptides and recruits a Cdc48 hexamer to extract them from 60S particles in order to escort them to the proteasome for degradation. Whereas the steps from stalled 60S recognition to aberrant peptide polyubiquitylation by the RQC complex have been described, the mechanism leading to proteasomal degradation of these defective translation products remains unknown. We show here that the RQC complex also exists as a ribosome-unbound complex during the escort of aberrant peptides to the proteasome. In addition, we identify a new partner of this light version of the RQC complex, the E3 ubiquitin ligase Tom1. Tom1 interacts with aberrant nascent peptides and is essential to limit their accumulation and aggregation in the absence of Rqc1; however, its E3 ubiquitin ligase activity is not required. Taken together, these results reveal new roles for Tom1 in protein quality control, aggregate prevention, and, therefore, proteostasis maintenance.
机译:蛋白质质量控​​制机制消除了有缺陷的多肽,以确保蛋白质抑制,避免蛋白质聚集体的毒性。在真核生物中,核糖体结合的质量控制(RQC)复合物检测由于翻译终止的功能障碍而在60S核糖体颗粒中保持异常的起重肽。 RQC络合物络合剂多肽异常多肽,并促进CDC48六聚体以从60S颗粒中提取它们以便将它们护送到蛋白酶中以降解。然而,已经描述了从RQC络合物停滞60s识别的步骤,其识别由RQC复合物的异常肽络合剂进行这些缺陷翻译产品的蛋白酶体降解的机制仍然未知。我们在这里展示RQC复合物在异常肽的护送期间也存在作为蛋白酶体的核糖体 - 未结合的复合物。此外,我们识别出这个光文版的新合作伙伴的RQC复合物,E3泛素连接酶Tom1。 Tom1与异常的新生肽相互作用,对于在没有RQC1的情况下限制它们的积累和聚集是必要的;然而,它不需要其E3泛素连接酶活性。总之,这些结果揭示了汤蛋白质质量控​​制,骨料总体综合性的新作用,以及因此蛋白质化维护。

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