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哺乳动物线粒体tRNA中补偿性进化的机制与趋同现象

Mechanisms and convergence of compensatory evolution in mammalian mitochondrial tRNAs.

作者信息

Kern Andrew D, Kondrashov Fyodor A

机构信息

Center for Population Biology, Section of Evolution and Ecology, University of California at Davis, Davis, California 95616, USA.

出版信息

Nat Genet. 2004 Nov;36(11):1207-12. doi: 10.1038/ng1451. Epub 2004 Oct 24.

Abstract

The function of protein and RNA molecules depends on complex epistatic interactions between sites. Therefore, the deleterious effect of a mutation can be suppressed by a compensatory second-site substitution. In relating a list of 86 pathogenic mutations in human tRNAs encoded by mitochondrial genes to the sequences of their mammalian orthologs, we noted that 52 pathogenic mutations were present in normal tRNAs of one or several nonhuman mammals. We found at least five mechanisms of compensation for 32 pathogenic mutations that destroyed a Watson-Crick pair in one of the four tRNA stems: restoration of the affected Watson-Crick interaction (25 cases), strengthening of another pair (4 cases), creation of a new pair (8 cases), changes of multiple interactions in the affected stem (11 cases) and changes involving the interaction between the loop and stem structures (3 cases). A pathogenic mutation and its compensating substitution are fixed in a lineage in rapid succession, and often a compensatory interaction evolves convergently in different clades. At least 10%, and perhaps as many as 50%, of all nucleotide substitutions in evolving mammalian tRNAs participate in such interactions, indicating that the evolution of tRNAs proceeds along highly epistatic fitness ridges.

摘要

蛋白质和RNA分子的功能取决于位点之间复杂的上位相互作用。因此,一个突变的有害效应可以被一个补偿性的第二位点替换所抑制。在将线粒体基因编码的人类tRNA中的86个致病突变列表与其哺乳动物直系同源序列相关联时,我们注意到52个致病突变存在于一种或几种非人类哺乳动物的正常tRNA中。我们发现了至少五种对32个致病突变的补偿机制,这些突变破坏了四种tRNA茎之一中的沃森-克里克碱基对:恢复受影响的沃森-克里克相互作用(25例)、加强另一对碱基对(4例)、形成新的碱基对(8例)、受影响茎中多个相互作用的变化(11例)以及涉及环和茎结构之间相互作用的变化(3例)。一个致病突变及其补偿性替换在一个谱系中迅速相继固定,并且通常补偿性相互作用在不同的进化枝中趋同进化。在进化的哺乳动物tRNA中,至少10%,甚至可能多达50%的所有核苷酸替换参与了此类相互作用,这表明tRNA的进化沿着高度上位的适应性脊进行。

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