首页> 外文期刊>Nucleic Acids Research >YaeJ is a novel ribosome-associated protein in Escherichia coli that can hydrolyze peptidyl-tRNA on stalled ribosomes
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YaeJ is a novel ribosome-associated protein in Escherichia coli that can hydrolyze peptidyl-tRNA on stalled ribosomes

机译:YaeJ是大肠杆菌中一种新型的与核糖体相关的蛋白质,可以水解停滞的核糖体上的肽基-tRNA。

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摘要

In bacteria, ribosomes often become stalled and are released by a trans-translation process mediated by transfer-messenger RNA (tmRNA). In the absence of tmRNA, however, there is evidence that stalled ribosomes are released from non-stop mRNAs. Here, we show a novel ribosome rescue system mediated by a small basic protein, YaeJ, from Escherichia coli, which is similar in sequence and structure to the catalytic domain 3 of polypeptide chain release factor (RF). In vitro translation experiments using the E. coli-based reconstituted cell-free protein synthesis system revealed that YaeJ can hydrolyze peptidyl-tRNA on ribosomes stalled by both non-stop mRNAs and mRNAs containing rare codon clusters that extend downstream from the P-site and prevent Ala-tmRNA center dot SmpB from entering the empty A-site. In addition, YaeJ had no effect on translation of a normal mRNA with a stop codon. These results suggested a novel tmRNA-independent rescue system for stalled ribosomes in E. coli. YaeJ was almost exclusively found in the 70S ribosome and polysome fractions after sucrose density gradient sedimentation, but was virtually undetectable in soluble fractions. The C-terminal basic residue-rich extension was also found to be required for ribosome binding. These findings suggest that YaeJ functions as a ribosome-attached rescue device for stalled ribosomes.
机译:在细菌中,核糖体通常会停滞并通过由传递信使RNA(tmRNA)介导的反翻译过程释放。但是,在没有tmRNA的情况下,有证据表明,停滞的核糖体会从不停的mRNA中释放出来。在这里,我们显示了一种由大肠杆菌的小碱性蛋白YaeJ介导的新型核糖体拯救系统,其序列和结构与多肽链释放因子(RF)的催化域3相似。使用基于大肠杆菌的重组无细胞蛋白质合成系统进行的体外翻译实验表明,YaeJ可以水解核糖体上的肽基-tRNA,该核糖体被不停的mRNA和含有从P位点向下游延伸的稀有密码子簇的mRNA所阻滞。防止Ala-tmRNA中心点SmpB进入空的A位点。此外,YaeJ对带有终止密码子的正常mRNA的翻译没有影响。这些结果提出了一种新颖的,与tmRNA无关的救援系统,用于大肠杆菌中失速的核糖体。蔗糖密度梯度沉降后,YaeJ几乎仅在70S核糖体和多核糖体馏分中发现,但在可溶性馏分中几乎未检出。还发现核糖体结合需要C末端碱性残基富集的延伸。这些发现表明,YaeJ可以作为停滞的核糖体的核糖体拯救工具。

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