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Reversible, Specific, Active Aggregates of Endogenous Proteins Assemble upon Heat Stress

机译:内源性蛋白质的可逆,特异性,活性聚集体在热应激时聚集

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摘要

Heat causes protein misfolding and aggregation and, in eukaryotic cells, triggers aggregation of proteins and RNA into stress granules. We have carried out extensive proteomic studies to quantify heat-triggered aggregation and subsequent disaggregation in budding yeast, identifying >170 endogenous proteins aggregating within minutes of heat shock in multiple subcellular compartments. We demonstrate that these aggregated proteins are not misfolded and destined for degradation. Stable-isotope labeling reveals that even severely aggregated endogenous proteins are disaggregated without degradation during recovery from shock, contrasting with the rapid degradation observed for many exogenous thermolabile proteins. Although aggregation likely inactivates many cellular proteins, in the case of a heterotrimeric aminoacyl-tRNA synthetase complex, the aggregated proteins remain active with unaltered fidelity. We propose that most heat-induced aggregation of mature proteins reflects the operation of an adaptive, autoregulatory process of functionally significant aggregate assembly and disassembly that aids cellular adaptation to thermal stress.
机译:热量会导致蛋白质错误折叠和聚集,并在真核细胞中触发蛋白质和RNA聚集成应激颗粒。我们已经进行了广泛的蛋白质组学研究,以量化发芽酵母中热触发的聚集和随后的聚集,鉴定出在多个亚细胞区室中热休克后几分钟内聚集的> 170种内源蛋白质。我们证明,这些聚集的蛋白质不会错误折叠并注定要降解。稳定同位素标记显示,即使是严重聚集的内源蛋白也可以从冲击中恢复降解,而不会降解,这与许多外源热不稳定蛋白的快速降解形成了鲜明对比。尽管聚集可能使许多细胞蛋白失活,但在异源三聚氨基酰基-tRNA合成酶复合物的情况下,聚集的蛋白保持活性,保真度不变。我们建议大多数热量诱导的成熟蛋白的聚集反应功能,重要的聚集体组装和拆卸,有助于细胞适应热应激的自适应,自动调节过程的操作。

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