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酵母中翻译与一般mRNA降解之间的相互关系。

Interrelations between translation and general mRNA degradation in yeast.

作者信息

Huch Susanne, Nissan Tracy

机构信息

Department of Molecular Biology, Umeå University, Umeå, Sweden.

出版信息

Wiley Interdiscip Rev RNA. 2014 Nov-Dec;5(6):747-63. doi: 10.1002/wrna.1244. Epub 2014 Jun 18.

Abstract

Messenger RNA (mRNA) degradation is an important element of gene expression that can be modulated by alterations in translation, such as reductions in initiation or elongation rates. Reducing translation initiation strongly affects mRNA degradation by driving mRNA toward the assembly of a decapping complex, leading to decapping. While mRNA stability decreases as a consequence of translational inhibition, in apparent contradiction several external stresses both inhibit translation initiation and stabilize mRNA. A key difference in these processes is that stresses induce multiple responses, one of which stabilizes mRNAs at the initial and rate-limiting step of general mRNA decay. Because this increase in mRNA stability is directly induced by stress, it is independent of the translational effects of stress, which provide the cell with an opportunity to assess its response to changing environmental conditions. After assessment, the cell can store mRNAs, reinitiate their translation or, alternatively, embark on a program of enhanced mRNA decay en masse. Finally, recent results suggest that mRNA decay is not limited to non-translating messages and can occur when ribosomes are not initiating but are still elongating on mRNA. This review will discuss the models for the mechanisms of these processes and recent developments in understanding the relationship between translation and general mRNA degradation, with a focus on yeast as a model system.

摘要

信使核糖核酸(mRNA)降解是基因表达的一个重要环节,可通过翻译过程中的改变进行调控,例如起始或延伸速率的降低。强烈降低翻译起始会通过促使mRNA形成脱帽复合体从而导致脱帽,对mRNA降解产生显著影响。虽然翻译抑制会导致mRNA稳定性下降,但明显矛盾的是,一些外部应激既能抑制翻译起始又能稳定mRNA。这些过程的一个关键差异在于,应激会引发多种反应,其中之一是在一般mRNA降解的起始和限速步骤稳定mRNA。由于这种mRNA稳定性的增加是由应激直接诱导的,它独立于应激的翻译效应,这为细胞提供了一个机会来评估其对不断变化的环境条件的反应。评估之后,细胞可以储存mRNA,重新启动其翻译,或者选择大规模启动一个增强mRNA降解的程序。最后,最近的研究结果表明,mRNA降解并不局限于未翻译的信息,当核糖体不在mRNA上起始但仍在延伸时也会发生。本综述将讨论这些过程机制的模型以及在理解翻译与一般mRNA降解之间关系方面的最新进展,重点以酵母作为模型系统进行阐述。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8053/4285117/71d133bb58ea/wrna0005-0747-f1.jpg

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