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通过酿酒酵母谱系中的模板切换实现蛋白质创新。

Protein innovation through template switching in the Saccharomyces cerevisiae lineage.

机构信息

Department of Natural and Life Sciences, The Open University of Israel, Ra'anana, Israel.

出版信息

Sci Rep. 2021 Nov 19;11(1):22558. doi: 10.1038/s41598-021-01736-y.

Abstract

DNA polymerase template switching between short, non-identical inverted repeats (IRs) is a genetic mechanism that leads to the homogenization of IR arms and to IR spacer inversion, which cause multinucleotide mutations (MNMs). It is unknown if and how template switching affects gene evolution. In this study, we performed a phylogenetic analysis to determine the effect of template switching between IR arms on coding DNA of Saccharomyces cerevisiae. To achieve this, perfect IRs that co-occurred with MNMs between a strain and its parental node were identified in S. cerevisiae strains. We determined that template switching introduced MNMs into 39 protein-coding genes through S. cerevisiae evolution, resulting in both arm homogenization and inversion of the IR spacer. These events in turn resulted in nonsynonymous substitutions and up to five neighboring amino acid replacements in a single gene. The study demonstrates that template switching is a powerful generator of multiple substitutions within codons. Additionally, some template switching events occurred more than once during S. cerevisiae evolution. Our findings suggest that template switching constitutes a general mutagenic mechanism that results in both nonsynonymous substitutions and parallel evolution, which are traditionally considered as evidence for positive selection, without the need for adaptive explanations.

摘要

DNA 聚合酶在短的、非完全相同的反向重复序列(IRs)之间模板转换是一种遗传机制,导致 IR 臂的同质化和 IR 间隔子反转,从而导致多核苷酸突变(MNMs)。目前尚不清楚模板转换是否以及如何影响基因进化。在这项研究中,我们进行了系统发育分析,以确定 IR 臂之间的模板转换对酿酒酵母编码 DNA 的影响。为了实现这一目标,我们在酿酒酵母菌株中鉴定了与菌株与其亲本节点之间的 MNMs 同时存在的完美 IR。我们确定,模板转换通过酿酒酵母进化将 MNMs 引入了 39 个蛋白质编码基因,导致 IR 间隔子的臂同质化和反转。这些事件反过来导致单个基因中的非同义取代和多达五个相邻氨基酸的替换。该研究表明,模板转换是在密码子内产生多个取代的强大机制。此外,在酿酒酵母进化过程中,一些模板转换事件发生了不止一次。我们的研究结果表明,模板转换构成了一种普遍的诱变机制,导致非同义取代和并行进化,这通常被认为是正选择的证据,而不需要适应性解释。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7a88/8604942/4264441b1a96/41598_2021_1736_Fig1_HTML.jpg

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