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Degradation Signals for Ubiquitin-Proteasome Dependent Cytosolic Protein Quality Control (CytoQC) in Yeast

机译:酵母中泛素-蛋白酶体依赖性胞质蛋白质量控制(CytoQC)的降解信号

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摘要

Cellular protein quality control (PQC) systems selectively target misfolded or otherwise aberrant proteins for degradation by the ubiquitin-proteasome system (UPS). How cells discern abnormal from normal proteins remains incompletely understood, but involves in part the recognition between ubiquitin E3 ligases and degradation signals (degrons) that are exposed in misfolded proteins. PQC is compartmentalized in the cell, and a great deal has been learned in recent years about ER-associated degradation (ERAD) and nuclear quality control. In contrast, a comprehensive view of cytosolic quality control (CytoQC) has yet to emerge, and will benefit from the development of a well-defined set of model substrates. In this study, we generated an isogenic “degron library” in Saccharomyces cerevisiae consisting of short sequences appended to the C-terminus of a reporter protein, . About half of these degron-containing proteins are substrates of the integral membrane E3 ligase , which also plays a pivotal role in ERAD and some nuclear protein degradation. Notably, some of our degron fusion proteins exhibit dependence on the E3 ligase / for degradation, apparently by a mechanism distinct from its known role in ribosomal quality control of translationally paused proteins. and , E3 ligases involved in the recognition of some misfolded CytoQC substrates, are largely dispensable for the degradation of our degron-containing proteins. Interestingly, the Hsp70/Hsp40 chaperone/cochaperones ,2 and , are required for the degradation of all constructs tested. Taken together, the comprehensive degron library presented here provides an important resource of isogenic substrates for testing candidate PQC components and identifying new ones.
机译:细胞蛋白质质量控​​制(PQC)系统选择性地针对错误折叠的蛋白质或其他异常蛋白质,以通过泛素-蛋白酶体系统(UPS)进行降解。细胞如何辨别正常蛋白与正常蛋白之间的关系仍未完全了解,但部分涉及泛素E3连接酶与错误折叠蛋白中暴露的降解信号(degrons)之间的识别。 PQC在细胞中是分隔的,近年来,有关ER相关降解(ERAD)和核质量控制的知识很多。相比之下,对胞质质量控制(CytoQC)的全面了解尚未出现,并将受益于一组定义明确的模型底物的开发。在这项研究中,我们在酿酒酵母中生成了一个同基因“ degron文库”,该文库由附加到报道蛋白C末端的短序列组成。这些含地格隆的蛋白质中约有一半是完整膜E3连接酶的底物,它在ERAD和某些核蛋白降解中也起着关键作用。值得注意的是,我们的某些degron融合蛋白表现出对E3连接酶/降解的依赖性,显然是通过一种不同于其在翻译暂停蛋白的核糖体质量控制中的已知作用的机制。和,E3连接酶参与一些错误折叠的CytoQC底物的识别,很大程度上是我们降解包含地格隆的蛋白质的必要条件。有趣的是,Hsp70 / Hsp40伴侣/伴侣蛋白2和,对于所有测试构建物的降解都是必需的。综上所述,这里介绍的全面的degron库提供了等基因底物的重要资源,可用于测试候选PQC组件和识别新的PQC组件。

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