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首页> 外文期刊>Genetics: A Periodical Record of Investigations Bearing on Heredity and Variation >Selective and Mutational Patterns Associated With Gene Expression in Humans
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Selective and Mutational Patterns Associated With Gene Expression in Humans

机译:与人类基因表达相关的选择性和突变模式

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We report the results of a comprehensive study of the influence of gene expression on synonymous codons, amino acid composition, and intron presence and size in human protein-coding genes. First, in addition to a strong effect of isochores, we have detected the influence of transcription-associated mutational biases (TAMB) on gene composition. Genes expressed in different tissues show diverse degrees of TAMB, with genes expressed in testis showing the greatest influence. Second, the study of tissues with no evidence of TAMB reveals a consistent set of optimal synonymous codons favored in highly expressed genes. This result exposes the consequences of natural selection on synonymous composition to increase efficiency of translation in the human lineage. Third, overall amino acid composition of proteins closely resembles tRNA abundance but there is no difference in amino acid composition in differentially expressed genes. Fourth, there is a negative relationship between expression and CDS length. Significantly, this is observed only among genes with introns, suggesting that the cause for this relationship in humans cannot be associated only with costs of amino acid biosynthesis. Fifth, we show that broadly and highly expressed genes have more, although shorter, introns. The selective advantage for having more introns in highly expressed genes is likely counterbalanced by containment of transcriptional costs and a minimum exon size for proper splicing.
机译:我们报告了对人类蛋白编码基因中同义密码子,氨基酸组成,内含子的存在和大小的影响的基因表达影响的全面研究的结果。首先,除了等位线的强大作用外,我们还检测了转录相关突变偏向(TAMB)对基因组成的影响。在不同组织中表达的基因显示出不同程度的TAMB,其中在睾丸中表达的基因显示出最大的影响。其次,对没有TAMB证据的组织的研究揭示了在高表达基因中偏爱的一致的最佳同义密码子集。该结果揭示了自然选择对同义词构成的影响,以提高人类谱系中翻译的效率。第三,蛋白质的总体氨基酸组成与tRNA丰度非常相似,但差异表达基因的氨基酸组成没有差异。第四,表达与CDS长度之间存在负相关关系。值得注意的是,这仅在具有内含子的基因中观察到,这表明人类中这种关系的原因不能仅与氨基酸生物合成的成本相关。第五,我们显示了广泛且高度表达的基因具有更多(尽管更短)的内含子。通过控制转录成本和适当剪接的最小外显子大小,可以抵消在高表达基因中具有更多内含子的选择性优势。

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