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The extent of Ssa1/Ssa2 Hsp70 chaperone involvement in nuclear protein quality control degradation varies with the substrate

机译:SSA1 / SSA2 HSP70伴随核蛋白质质量控制降解的伴侣伴伴随的程度与基材不同

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摘要

Protein misfolding is a recurring phenomenon that cells must manage; otherwise misfolded proteins can aggregate and become toxic should they persist. To counter this burden, cells have evolved protein quality control (PQC) mechanisms that manage misfolded proteins. Two classes of systems that function in PQC are chaperones that aid in protein folding and ubiquitin-protein ligases that ubiquitinate misfolded proteins for proteasomal degradation. How folding and degradative PQC systems interact and coordinate their respective functions is not yet fully understood. Previous studies of PQC degradation pathways in the endoplasmic reticulum and cytosol have led to the prevailing idea that these pathways require the activity of Hsp70 chaperones. Here, we find that involvement of the budding yeast Hsp70 chaperones Ssa1 and Ssa2 in nuclear PQC degradation varies with the substrate. In particular, nuclear PQC degradation mediated by the yeast ubiquitin-protein ligase San1 often involves Ssa1/Ssa2, but San1 substrate recognition and ubiquitination can proceed without these Hsp70 chaperone functions in vivo and in vitro. Our studies provide new insights into the variability of Hsp70 chaperone involvement with a nuclear PQC degradation pathway.
机译:蛋白质错误折叠是细胞必须管理的反复性现象;否则错误折叠的蛋白质可以占用并变得毒性应该坚持。为了对抗这种负担,细胞具有管理错误折叠的蛋白质的蛋白质质量控​​制(PQC)机制。在PQC中起作用的两类系统是有助于蛋白质折叠和泛素 - 蛋白质的蛋白质蛋白质蛋白质的蛋白质蛋白质蛋白质降解。尚未完全理解折叠和降解PQC系统的互补和协调各自的功能。先前的PQC降解途径在内质网和细胞溶溶胶中的研究导致了这些途径需要HSP70伴侣的活性的普遍思想。在这里,我们发现芽孢芽酵母HSP70伴侣SSA1和SSA2在核PQC降解中的参与随底物而变化。特别地,由酵母泛素 - 蛋白质连接酶SAN1介导的核PQC降解通常涉及SSA1 / SSA2,但是SAN1底物识别和泛素化可以在体内和体外没有这些HSP70伴随这些伴随这些伴随的伴随的伴随。我们的研究为HSP70伴侣作用与核PQC降解途径的可变性提供了新的见解。

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