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首页> 外文期刊>Journal of Cell Science >Vulnerability of newly synthesized proteins to proteostasis stress
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Vulnerability of newly synthesized proteins to proteostasis stress

机译:新合成的蛋白质对蛋白稳态压力的脆弱性

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摘要

The capacity of the cell to produce, fold and degrade proteins relies on components of the proteostasis network. Multiple types of insults can impose a burden on this network, causing protein misfolding. Using thermal stress, a classic example of acute proteostatic stress, we demonstrate that similar to 5-10% of the soluble cytosolic and nuclear proteome in human HEK293 cells is vulnerable to misfolding when proteostatic function is overwhelmed. Inhibiting new protein synthesis for 30 min prior to heat-shock dramatically reduced the amount of heat-stress induced polyubiquitylation, and reduced the misfolding of proteins identified as vulnerable to thermal stress. Following prior studies in C. elegans in which mutant huntingtin (Q103) expression was shown to cause the secondary misfolding of cytosolic proteins, we also demonstrate that mutant huntingtin causes similar 'secondary' misfolding in human cells. Similar to thermal stress, inhibiting new protein synthesis reduced the impact of mutant huntingtin on proteostatic function. These findings suggest that newly made proteins are vulnerable to misfolding when proteostasis is disrupted by insults such as thermal stress and mutant protein aggregation.
机译:细胞产生,折叠和降解蛋白质的能力取决于蛋白质稳定网络的组成部分。多种类型的侮辱会对该网络造成负担,导致蛋白质错误折叠。使用热应激,这是急性蛋白水解应激的经典例子,我们证明了当蛋白水解抑制功能不堪重负时,人类HEK293细胞中约有5-10%的可溶性胞质和核蛋白组易于折叠。在热休克前抑制新蛋白质合成30分钟,可显着减少热应激诱导的泛素化程度,并减少被鉴定为易受热应激影响的蛋白质的错误折叠。在秀丽隐杆线虫中先前的研究中,突变亨廷顿蛋白(Q103)的表达被证明会引起细胞溶质蛋白的继发错误折叠,我们还证明了突变亨廷顿蛋白在人类细胞中引起类似的“继发”错误折叠。与热应激相似,抑制新蛋白质合成可减少突变型亨廷顿蛋白对蛋白稳定功能的影响。这些发现表明,当由于热应激和突变的蛋白质聚集等破坏而破坏了蛋白质稳态时,新产生的蛋白质很容易发生错误折叠。

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