首页> 美国卫生研究院文献>The Journal of Biological Chemistry >Nuclear Import Factor Srp1 and Its Associated Protein Sts1 Couple Ribosome-bound Nascent Polypeptides to Proteasomes for Cotranslational Degradation
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Nuclear Import Factor Srp1 and Its Associated Protein Sts1 Couple Ribosome-bound Nascent Polypeptides to Proteasomes for Cotranslational Degradation

机译:核导入因子Srp1及其相关蛋白Sts1耦合核糖体绑定的新生多肽到蛋白酶体共翻译降解。

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摘要

Cotranslational protein degradation plays an important role in protein quality control and proteostasis. Although ubiquitylation has been suggested to signal cotranslational degradation of nascent polypeptides, cotranslational ubiquitylation occurs at a low level, suggesting the existence of an alternative route for delivery of nascent polypeptides to the proteasome. Here we report that the nuclear import factor Srp1 (also known as importin α or karyopherin α) is required for ubiquitin-independent cotranslational degradation of the transcription factor Rpn4. We further demonstrate that cotranslational protein degradation is generally impaired in the srp1–49 mutant. Srp1 binds nascent polypeptides emerging from the ribosome. The association of proteasomes with polysomes is weakened in srp1–49. The interaction between Srp1 and the proteasome is mediated by Sts1, a multicopy suppressor of srp1–49. The srp1–49 and sts1–2 mutants are hypersensitive to stressors that promote protein misfolding, underscoring the physiological function of Srp1 and Sts1 in degradation of misfolded nascent polypeptides. This study unveils a previously unknown role for Srp1 and Sts1 in cotranslational protein degradation and suggests a novel model whereby Srp1 and Sts1 cooperate to couple proteasomes to ribosome-bound nascent polypeptides.
机译:共翻译蛋白降解在蛋白质量控制和蛋白稳定中起重要作用。尽管已提出泛素化信号指示新生多肽的共翻译降解,但共翻译泛素化发生的水平较低,表明存在将新生多肽递送至蛋白酶体的替代途径。在这里我们报告核转录因子Rpn4的泛素非依赖性共翻译降解需要核输入因子Srp1(也称为importinα或karyopherinα)。我们进一步证明,在srp1-49突变体中,共翻译蛋白降解通常受到损害。 Srp1结合从核糖体出现的新生多肽。蛋白酶体与多核糖体的结合在srp1-49中减弱。 Srp1和蛋白酶体之间的相互作用是由Sts1介导的,它是srp1-49的多拷贝抑制剂。 srp1–49和sts1–2突变体对促进蛋白错误折叠的应激源非常敏感,从而强调了Srp1和Sts1在错误折叠的新生多肽降解中的生理功能。这项研究揭示了Srp1和Sts1在共翻译蛋白降解中的先前未知的作用,并提出了一个新的模型,其中Srp1和Sts1协同将蛋白酶体与核糖体结合的新生多肽偶联。

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