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密码子使用偏性通过改变 RNA 稳定性和胞嘧啶甲基化模式影响 α-淀粉酶 mRNA 水平。

Codon usage bias affects α-amylase mRNA level by altering RNA stability and cytosine methylation patterns in .

机构信息

State Key Laboratory of Bioreactor Engineering, East China University of Science and Technology, Shanghai 200237, P.R. China.

出版信息

Can J Microbiol. 2020 Sep;66(9):521-528. doi: 10.1139/cjm-2019-0624. Epub 2020 Apr 7.

Abstract

Codon usage bias exists in almost every organism and is reported to regulate protein translation efficiency and folding. Besides translation, the preliminary role of codon usage bias on gene transcription has also been revealed in some eukaryotes such as . In this study, we took as an example the α-amylase-coding gene () and examined the role of codon usage bias in regulating gene expression in the typical prokaryote . We confirmed the higher translation efficiency on codon-optimized RNAs and found that the RNA level itself was also affected by codon optimization. The decreased RNA level was caused at least in part by altered mRNA stability at the post-transcriptional level. Codon optimization also altered the number of cytosine methylation sites. Examination on knockouts suggested that cytosine methylation may be a minor mechanism adopted by codon bias to regulate gene RNA levels. More studies are required to verify the global effect of codon usage and to reveal its detailed mechanism on transcription.

摘要

密码子使用偏性存在于几乎所有的生物体中,据报道它可以调节蛋白质翻译效率和折叠。除了翻译,密码子使用偏性对基因转录的初步作用也在一些真核生物中得到了揭示,如. 在这项研究中,我们以α-淀粉酶编码基因()为例,研究了密码子使用偏性在调节典型原核生物中的基因表达中的作用。我们证实了密码子优化的 RNA 具有更高的翻译效率,并且发现 RNA 水平本身也受到密码子优化的影响。RNA 水平的降低至少部分是由于在转录后水平改变了 mRNA 的稳定性。密码子优化还改变了胞嘧啶甲基化位点的数量。对敲除的研究表明,胞嘧啶甲基化可能是密码子偏性调节基因 RNA 水平的一种次要机制。需要更多的研究来验证密码子使用的全局效应,并揭示其在转录中的详细机制。

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