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TRIM11 activates the proteasome and promotes overall protein degradation by regulating USP14

机译:TRIM11通过调节USP14激活蛋白酶体并促进总蛋白降解

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摘要

The proteasome is a complex protease critical for protein quality control and cell regulation, and its dysfunction is associated with cancer and other diseases. However, the mechanisms that control proteasome activity  in normal and malignant cells remain unclear. Here we report that TRIM11 enhances degradation of aberrant and normal regulatory proteins, and augments overall rate of proteolysis. Mechanistically, TRIM11 binds to both the proteasome and USP14, a deubiquitinase that prematurely removes ubiquitins from proteasome-bound substrates and also noncatalytically inhibits the proteasome, and precludes their association, thereby increasing proteasome activity. TRIM11 promotes cell survival and is upregulated upon heat shock. Moreover, TRIM11 is required for tumor growth, and increased expression of TRIM11 correlates with poor clinical survival. These findings identify TRIM11 as an important activator of the proteasome, define a pathway that adjusts proteasome activity, and reveal a mechanism by which tumor cells acquire higher degradative power to support oncogenic growth.
机译:蛋白酶体是对蛋白质质量控​​制和细胞调节至关重要的复杂蛋白酶,其功能障碍与癌症和其他疾病有关。然而,控制正常和恶性细胞中蛋白酶体活性的机制仍不清楚。在这里我们报告TRIM11增强了异常和正常调节蛋白的降解,并增强了蛋白水解的整体速率。从机理上讲,TRIM11既与蛋白酶体结合,也与USP14结合,这是一种去泛素酶,可从结合蛋白酶体的底物上过早地去除泛素,并且还非催化地抑制蛋白酶体,并阻止它们的缔合,从而增加了蛋白酶体的活性。 TRIM11促进细胞存活,并在热激时被上调。此外,肿瘤生长需要TRIM11,并且TRIM11的表达增加与不良的临床存活率相关。这些发现确定TRIM11是蛋白酶体的重要激活剂,定义了调节蛋白酶体活性的途径,并揭示了肿瘤细胞获得更高降解能力以支持致癌生长的机制。

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