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Comparison of codon usage bias across Leishmania and Trypanosomatids to understand mRNA secondary structure, relative protein abundance and pathway functions

机译:比较利什曼原虫和锥虫的密码子使用偏好,以了解mRNA二级结构,相对蛋白丰度和途径功能

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摘要

Understanding the variations in gene organization and its effect on the phenotype across different Leishmania species, and to study differential clinical manifestations of parasite within the host, we performed large scale analysis of codon usage patterns between Leishmania and other known Trypanosomatid species. We present; the causes and consequences of codon usage bias in Leishmania genomes with respect to mutational pressure, translational selection and amino acid composition bias. We establish GC bias at wobble position that governs codon usage bias across Leishmania species, rather than amino acid composition bias. We found that, within Leishmania, homogenous codon context coding for less frequent amino acid pairs and codons avoiding formation of folding structures in mRNA are essentially chosen. We predicted putative differences in global expression between genes belonging to specific pathways across Leishmania. This explains the role of evolution in shaping the otherwise conserved genome to demonstrate species-specific function-level differences for efficient survival. (C) 2015 Elsevier Inc. All rights reserved.
机译:了解不同利什曼原虫物种之间基因组织的变化及其对表型的影响,并研究寄主内寄生虫的不同临床表现,我们对利什曼原虫与其他已知锥虫之间的密码子使用方式进行了大规模分析。我们提出;利什曼原虫基因组密码子使用偏倚的原因和后果,涉及突变压力,翻译选择和氨基酸组成偏倚。我们在摆动位置建立GC偏倚,该偏倚控制整个利什曼原虫物种的密码子使用偏倚,而不是氨基酸组成偏倚。我们发现,在利什曼原虫中,编码较少频率氨基酸对的均质密码子上下文和避免在mRNA中形成折叠结构的密码子基本上是选择的。我们预测属于利什曼原虫特定途径的基因之间的全球表达的假定差异。这解释了进化在塑造原本保守的基因组中的作用,以证明物种特有的功能水平差异来有效存活。 (C)2015 Elsevier Inc.保留所有权利。

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