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首页> 外文期刊>Molecular biology of the cell >Ubr1 and Ubr2 Function in a Quality Control Pathway for Degradation of Unfolded Cytosolic Proteins
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Ubr1 and Ubr2 Function in a Quality Control Pathway for Degradation of Unfolded Cytosolic Proteins

机译:Ubr1和Ubr2在降解未折叠胞质蛋白的质量控制途径中的功能

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摘要

Quality control systems facilitate polypeptide folding and degradation to maintain protein homeostasis. Molecular chaperones promote folding, whereas the ubiquitin/proteasome system mediates degradation. We show here that Saccharomyces cerevisiae Ubr1 and Ubr2 ubiquitin ligases promote degradation of unfolded or misfolded cytosolic polypeptides. Ubr1 also catalyzes ubiquitinylation of denatured but not native luciferase in a purified system. This activity is based on the direct interaction of denatured luciferase with Ubr1, although Hsp70 stimulates polyubiquitinylation of the denatured substrate. We also report that loss of Ubr1 and Ubr2 function suppressed the growth arrest phenotype resulting from chaperone mutation. This correlates with increased protein kinase maturation and indicates partitioning of foldable conformers toward the proteasome. Our findings, based on the efficiency of this quality control system, suggest that the cell trades growth potential to avert the potential toxicity associated with accumulation of unfolded or misfolded proteins. Ubr1 and Ubr2 therefore represent E3 components of a novel quality control pathway for proteins synthesized on cytosolic ribosomes.
机译:质量控制系统有助于多肽折叠和降解以维持蛋白质稳态。分子伴侣促进折叠,而泛素/蛋白酶体系统介导降解。我们在这里显示啤酒酵母Ubr1和Ubr2泛素连接酶促进未折叠或错误折叠的胞质多肽的降解。在纯化的系统中,Ubr1还催化变性的而非天然的荧光素酶的泛素化。该活性是基于变性的荧光素酶与Ubr1的直接相互作用,尽管Hsp70刺激了变性底物的多泛素化。我们还报告说,Ubr1和Ubr2功能的丧失抑制了伴侣突变导致的生长停滞表型。这与增加的蛋白激酶成熟有关,并指示可折叠构象体向蛋白酶体的分配。基于该质量控制系统的效率,我们的发现表明,该细胞具有生长潜力,可以避免与未折叠或错误折叠的蛋白质积累相关的潜在毒性。因此,Ubr1和Ubr2代表了在胞质核糖体上合成的蛋白质的新型质量控制途径中的E3成分。

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