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蛋白质编码基因中的T-G-A缺失模式及其潜在原因。

T-G-A Deficiency Pattern in Protein-Coding Genes and Its Potential Reason.

作者信息

Jin Yan-Ting, Pu Dong-Kai, Guo Hai-Xia, Deng Zixin, Chen Ling-Ling, Guo Feng-Biao

机构信息

School of Life Science and Technology, University of Electronic Science and Technology of China, Chengdu, China.

Department of Respiratory and Critical Care Medicine, Zhongnan Hospital of Wuhan University, Key Laboratory of Combinatorial Biosynthesis and Drug Discovery, Ministry of Education and School of Pharmaceutical Sciences, Wuhan University, Wuhan, China.

出版信息

Front Microbiol. 2022 May 4;13:847325. doi: 10.3389/fmicb.2022.847325. eCollection 2022.

Abstract

If a stop codon appears within one gene, then its translation will be terminated earlier than expected. False folding of premature protein will be adverse to the host; hence, all functional genes would tend to avoid the intragenic stop codons. Therefore, we hypothesize that there will be less frequency of nucleotides corresponding to stop codons at each codon position of genes. Here, we validate this inference by investigating the nucleotide frequency at a large scale and results from 19,911 prokaryote genomes revealed that nucleotides coinciding with stop codons indeed have the lowest frequency in most genomes. Interestingly, genes with three types of stop codons all tend to follow a T-G-A deficiency pattern, suggesting that the property of avoiding intragenic termination pressure is the same and the major stop codon TGA plays a dominant role in this effect. Finally, a positive correlation between the TGA deficiency extent and the base length was observed in start-experimentally verified genes of (. ). This strengthens the proof of our hypothesis. The T-G-A deficiency pattern observed would help to understand the evolution of codon usage tactics in extant organisms.

摘要

如果一个终止密码子出现在一个基因内部,那么它的翻译将会比预期提前终止。过早蛋白质的错误折叠会对宿主不利;因此,所有功能基因都会倾向于避免基因内的终止密码子。所以,我们推测在基因的每个密码子位置上,与终止密码子相对应的核苷酸频率会更低。在此,我们通过大规模调查核苷酸频率来验证这一推断,来自19911个原核生物基因组的结果表明,与终止密码子一致的核苷酸在大多数基因组中确实具有最低的频率。有趣的是,具有三种终止密码子类型的基因都倾向于遵循T - G - A缺乏模式,这表明避免基因内终止压力的特性是相同的,并且主要终止密码子TGA在这种效应中起主导作用。最后,在(. )的起始实验验证基因中观察到TGA缺乏程度与碱基长度之间存在正相关。这加强了我们假设的证据。观察到的T - G - A缺乏模式将有助于理解现存生物中密码子使用策略的进化。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/675a/9116502/0f6e0e13a7d0/fmicb-13-847325-g0001.jpg

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