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首页> 外文期刊>Molecular Biology and Evolution >Impacts of Gene Essentiality, Expression Pattern, and Gene Compactness on the Evolutionary Rate of Mammalian Proteins
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Impacts of Gene Essentiality, Expression Pattern, and Gene Compactness on the Evolutionary Rate of Mammalian Proteins

机译:基因本质,表达模式和基因紧凑性对哺乳动物蛋白进化速率的影响。

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Understanding the determinants of the rate of protein sequence evolution is of fundamental importance in evolutionary biology. Many recent studies have focused on the yeast because of the availability of many genome-wide expressional and functional data. Yeast studies revealed a predominant role of gene expression level and a minor role of gene essentiality in determining the rate of protein sequence evolution. Whether these rules apply to complex organisms such as mammals is unclear. Here we assemble a list of 1,138 essential and 2,341 nonessential mouse genes based on targeted gene deletion experiments and report a significant impact of gene essentiality on the rate of mammalian protein evolution. Gene expression level has virtually no effect, although tissue specificity in expression pattern has a strong influence. Unexpectedly, gene compactness, measured by average intron size and untranslated region length, has the greatest influence. Hence, the relative importance of the various factors in determining the rate of mammalian protein evolution is gene compactness > gene essentiality ≈ tissue specificity > expression level. Our results suggest a considerable variation in rate determinants between unicellular organisms such as the yeast and multicellular organisms such as mammals.
机译:了解蛋白质序列进化速率的决定因素在进化生物学中至关重要。由于可获得许多全基因组范围的表达和功能数据,许多近期研究都集中在酵母上。酵母研究表明,基因表达水平的主要作用和基因必需性在确定蛋白质序列进化速率中的次要作用。这些规则是否适用于诸如哺乳动物的复杂生物尚不清楚。在这里,我们根据有针对性的基因删除实验组装了1138个必需和2341个非必需小鼠基因,并报告了基因必需性对哺乳动物蛋白质进化速率的重大影响。尽管表达模式中的组织特异性有很强的影响,但是基因表达水平实际上没有作用。出乎意料的是,通过平均内含子大小和非翻译区域长度来衡量的基因紧实度影响最大。因此,决定哺乳动物蛋白质进化速率的各种因素的相对重要性是基因紧密度>基因必需性≈组织特异性>表达水平。我们的结果表明,单细胞生物(例如酵母菌)和多细胞生物(例如哺乳动物)之间的速率决定因素有很大差异。

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