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前折叠蛋白通过维持底物溶解性促进具有错义突变的胞质蛋白的蛋白酶体降解。

Prefoldin Promotes Proteasomal Degradation of Cytosolic Proteins with Missense Mutations by Maintaining Substrate Solubility.

作者信息

Comyn Sophie A, Young Barry P, Loewen Christopher J, Mayor Thibault

机构信息

Michael Smith Laboratories, University of British Columbia, Vancouver, British Columbia, Canada.

Genome Science and Technology Program, University of British Columbia, Vancouver, British Columbia, Canada.

出版信息

PLoS Genet. 2016 Jul 22;12(7):e1006184. doi: 10.1371/journal.pgen.1006184. eCollection 2016 Jul.

Abstract

Misfolded proteins challenge the ability of cells to maintain protein homeostasis and can accumulate into toxic protein aggregates. As a consequence, cells have adopted a number of protein quality control pathways to prevent protein aggregation, promote protein folding, and target terminally misfolded proteins for degradation. In this study, we employed a thermosensitive allele of the yeast Guk1 guanylate kinase as a model misfolded protein to investigate degradative protein quality control pathways. We performed a flow cytometry based screen to identify factors that promote proteasomal degradation of proteins misfolded as the result of missense mutations. In addition to the E3 ubiquitin ligase Ubr1, we identified the prefoldin chaperone subunit Gim3 as an important quality control factor. Whereas the absence of GIM3 did not impair proteasomal function or the ubiquitination of the model substrate, it led to the accumulation of the poorly soluble model substrate in cellular inclusions that was accompanied by delayed degradation. We found that Gim3 interacted with the Guk1 mutant allele and propose that prefoldin promotes the degradation of the unstable model substrate by maintaining the solubility of the misfolded protein. We also demonstrated that in addition to the Guk1 mutant, prefoldin can stabilize other misfolded cytosolic proteins containing missense mutations.

摘要

错误折叠的蛋白质对细胞维持蛋白质稳态的能力构成挑战,并可聚积形成有毒的蛋白质聚集体。因此,细胞采用了多种蛋白质质量控制途径来防止蛋白质聚集、促进蛋白质折叠,并将最终错误折叠的蛋白质靶向降解。在本研究中,我们利用酵母鸟苷酸激酶Guk1的一个温度敏感等位基因作为错误折叠蛋白质的模型,来研究蛋白质降解的质量控制途径。我们进行了一项基于流式细胞术的筛选,以鉴定促进由于错义突变而错误折叠的蛋白质进行蛋白酶体降解的因子。除了E3泛素连接酶Ubr1外,我们还鉴定了预折叠蛋白伴侣亚基Gim3是一个重要的质量控制因子。虽然缺失GIM3不会损害蛋白酶体功能或模型底物的泛素化,但它会导致难溶性模型底物在细胞内含物中积累,并伴有降解延迟。我们发现Gim3与Guk1突变等位基因相互作用,并提出预折叠蛋白通过维持错误折叠蛋白质的溶解度来促进不稳定模型底物的降解。我们还证明,除了Guk1突变体之外,预折叠蛋白还可以稳定其他含有错义突变的错误折叠的胞质蛋白。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/fcdb/4957761/7b28f2d12b12/pgen.1006184.g001.jpg

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