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大肠杆菌中拯救停滞核糖体的故障安全系统。

The fail-safe system to rescue the stalled ribosomes in Escherichia coli.

作者信息

Abo Tatsuhiko, Chadani Yuhei

机构信息

Graduate School of Natural Science and Technology, Okayama University Okayama, Japan ; Department of Biology, Faculty of Science, Okayama University Okayama, Japan.

Graduate School of Natural Science and Technology, Okayama University Okayama, Japan.

出版信息

Front Microbiol. 2014 Apr 10;5:156. doi: 10.3389/fmicb.2014.00156. eCollection 2014.

Abstract

Translation terminates at stop codon. Without stop codon, ribosome cannot terminate translation properly and reaches and stalls at the 3'-end of the mRNA lacking stop codon. Bacterial tmRNA-mediated trans-translation releases such stalled ribosome and targets the protein product to degradation by adding specific "degradation tag." Recently two alternative ribosome rescue factors, ArfA (YhdL) and ArfB (YaeJ), have been found in Escherichia coli. These three ribosome rescue systems are different each other in terms of molecular mechanism of ribosome rescue and their activity, but they are mutually related and co-operate to maintain the translation system in shape. This suggests the biological significance of ribosome rescue.

摘要

翻译在终止密码子处终止。没有终止密码子,核糖体就无法正常终止翻译,会到达缺乏终止密码子的mRNA的3'末端并停滞。细菌的转移信使核糖核酸(tmRNA)介导的反式翻译会释放这种停滞的核糖体,并通过添加特定的“降解标签”将蛋白质产物靶向降解。最近,在大肠杆菌中发现了另外两种核糖体拯救因子,ArfA(YhdL)和ArfB(YaeJ)。这三种核糖体拯救系统在核糖体拯救的分子机制及其活性方面彼此不同,但它们相互关联并协同作用以维持翻译系统的正常状态。这表明了核糖体拯救的生物学意义。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5ec2/3989581/1a05e3038038/fmicb-05-00156-g001.jpg

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