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Relative structural and functional roles of multiple deubiquitylating proteins associated with mammalian 26S proteasome

机译:与哺乳动物26S蛋白酶体相关的多种去泛素化蛋白的相对结构和功能作用

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We determined composition and relative roles of deubiquitylating proteins associated with the 26S proteasome in mammalian cells. Three deubiquitylating activities were associated with the 26S proteasome: two from constituent subunits, Rpn11/S13 and Uch37, and one from a reversibly associated protein, Usp14. RNA interference ( RNAi) of Rpn11/S13 inhibited cell growth, decreased cellular proteasome activity via disrupted 26S proteasome assembly, and inhibited cellular protein degradation. In contrast, RNAi of Uch37 or Usp14 had no detectable effect on cell growth, proteasome structure or proteolytic capacity, but accelerated cellular protein degradation. RNAi of both Uch37 and Usp14 also had no effect on proteasome structure or proteolytic capacity, but inhibited cellular protein degradation. Thus, proper proteasomal processing of ubiquitylated substrates requires Rpn11 plus either Uch37 or Usp14. Although the latter proteins feature redundant deubiquitylation functions, they also appear to exert noncatalyic effects on proteasome activity that are similar to but independent of one another. These results reveal unexpected functional relationships among multiple deubiquitylating proteins and suggest a model for mammalian 26S proteasome function whereby their concerted action governs proteasome function by linking deubiquitylation to substrate hydrolysis.
机译:我们确定了哺乳动物细胞中与26S蛋白酶体相关的去泛素化蛋白的组成和相对作用。三种去泛素化活性与26S蛋白酶体相关:两种来自组成亚基Rpn11 / S13和Uch37,另一种来自可逆相关蛋白Usp14。 Rpn11 / S13的RNA干扰(RNAi)抑制细胞生长,通过破坏26S蛋白酶体组装降低细胞蛋白酶体活性,并抑制细胞蛋白质降解。相比之下,Uch37或Usp14的RNAi对细胞生长,蛋白酶体结构或蛋白水解能力没有可检测的影响,但会加速细胞蛋白质降解。 Uch37和Usp14的RNAi对蛋白酶体的结构或蛋白水解能力也没有影响,但抑制细胞蛋白质降解。因此,对泛素化底物进行正确的蛋白酶体加工需要Rpn11加Uch37或Usp14。尽管后一种蛋白具有多余的去泛素化功能,但它们似乎也对蛋白酶体活性发挥非催化作用,这彼此相似但彼此独立。这些结果揭示了多种去泛素化蛋白之间的出乎意料的功能关系,并提出了哺乳动物26S蛋白酶体功能的模型,其中它们的协同作用通过将去泛素化与底物水解联系在一起来控制蛋白酶体功能。

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