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Consequences of Stop Codon Reassignment on Protein Evolution in Ciliates with Alternative Genetic Codes

机译:具有替代遗传密码的纤毛中终止密码子重新分配对蛋白质进化的影响

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摘要

Tetrahymena thermophila and Paramecium tetraurelia are ciliates that reassign TAA and TAG from stop codons to glutamine codons. Because of the lack of full genome sequences, few studies have concentrated on analyzing the effects of codon reassignment in protein evolution. We used the recently sequenced genome of these species to analyze the patterns of amino acid substitution in ciliates that reassign the code. We show that, as expected, the codon reassignment has a large impact on amino acid substitutions in closely related proteins; however, contrary to expectations, these effects also hold for very diverged proteins. Previous studies have used amino acid substitution data to calculate the minimization of the genetic code; our results show that because of the lasting influence of the code in the patterns of substitution, such studies are tautological. These different substitution patterns might affect alignment of ciliate proteins, as alignment programs use scoring matrices based on substitution patterns of organisms that use the standard code. We also show that glutamine is used more frequently in ciliates than in other species, as often as expected based on the presence of the 2 new reassigned codons, indicating that the frequencies of amino acids in proteomes is mostly determined by neutral processes based on their number of codons.
机译:嗜热四膜虫和草履虫履毛虫是纤毛虫,将TAA和TAG从终止密码子重新分配给谷氨酰胺密码子。由于缺乏完整的基因组序列,很少有研究集中在分析密码子重新分配在蛋白质进化中的作用。我们使用了最近测序的这些物种的基因组,分析了纤毛虫中氨基酸置换的模式,从而重新分配了密码。我们证明,正如预期的那样,密码子的重新分配对紧密相关的蛋白质中的氨基酸取代有很大的影响。然而,与预期相反,这些影响也适用于差异很大的蛋白质。先前的研究已经使用氨基酸替代数据来计算遗传密码的最小化。我们的结果表明,由于代码对替换模式的持久影响,因此此类研究是重言式的。这些不同的替换模式可能会影响纤毛蛋白的对齐方式,因为对齐程序会根据使用标准代码的生物的替换模式使用评分矩阵。我们还显示,与其他物种相比,在纤毛虫中谷氨酰胺的使用频率更高,这是基于两个新的重新分配的密码子的存在所期望的频率,这表明蛋白质组中氨基酸的频率主要由中性过程根据其数量决定密码子。

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