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Nascent Peptide-dependent Translation Arrest Leads to Not4p-mediated Protein Degradation by the Proteasome

机译:新生肽依赖翻译逮捕导致Not4p介导。 蛋白质的降解 蛋白酶体

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摘要

The potentially deleterious effects of aberrant mRNA lacking a termination codon (nonstop mRNA) are ameliorated by translation arrest, proteasome-mediated protein destabilization, and rapid mRNA degradation. Because polylysine synthesis via translation of the poly(A) mRNA tail leads to translation arrest and protein degradation by the proteasome, we examined the effects of other amino acid sequences. Insertion of 12 consecutive basic amino acids between GFP and HIS3 reporter genes, but not a stem-loop structure, resulted in degradation of the truncated green fluorescent protein (GFP) products by the proteasome. Translation arrest products derived from GFP-R12-FLAG-HIS3 or GFP-K12-FLAG-HIS3 mRNA were detected in a not4Δ mutant, and MG132 treatment did not affect the levels of the truncated arrest products. Deletion of other components of the Ccr4-Not complex did not increase the levels of the translation arrest products or reporter mRNAs. A L35A substitution in the Not4p RING finger domain, which disrupted its interaction with the Ubc4/Ubc5 E2 enzyme and its activity as an ubiquitin-protein ligase, also abrogated the degradation of arrest products. These results suggest that Not4p, a component of the Ccr4-Not complex, may act as an E3 ubiquitin-protein ligase for translation arrest products. The results let us propose that the interaction between basic amino acid residues and the negatively charged exit tunnel of the ribosome leads to translation arrest followed by Not4p-mediated ubiquitination and protein degradation by the proteasome.
机译:缺少终止密码子(不间断mRNA)的异常mRNA的潜在有害作用可通过翻译停止,蛋白酶体介导的蛋白质去稳定和快速mRNA降解来改善。因为通过poly(A)mRNA尾部翻译而合成的聚赖氨酸会导致蛋白酶体停止翻译并降解蛋白质,所以我们检查了其他氨基酸序列的作用。在GFP和HIS3报告基因之间插入12个连续的碱性氨基酸,但没有茎环结构,导致蛋白酶体降解了截短的绿色荧光蛋白(GFP)产物。在not4Δ突变体中检测到了源自GFP-R12-FLAG-HIS3或GFP-K12-FLAG-HIS3 mRNA的翻译终止产物,MG132处理并未影响截短的终止产物的水平。删除Ccr4-Not复杂的其他组件不会增加翻译停止产物或报告mRNA的水平。 Not4p RING指域中的L35A取代破坏了它与Ubc4 / Ubc5 E2酶的相互作用,并破坏了其作为泛素蛋白连接酶的活性,也消除了逮捕产物的降解。这些结果表明,Not4p是一个组成部分 Ccr4-Not complex的作用,可能充当E3泛素蛋白连接酶 翻译逮捕产品。结果让我们提出互动 在碱性氨基酸残基和负电荷出口通道之间 核糖体导致翻译停滞,随后是Not4p介导的 蛋白酶体的泛素化和蛋白质降解。

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