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果蝇中Ras介导的信号转导途径各组分上的对比选择压力。

Contrasting selection pressures on components of the Ras-mediated signal transduction pathway in Drosophila.

作者信息

Riley Rebecca M, Jin Wei, Gibson Greg

机构信息

Department of Genetics, North Carolina State University, Raleigh, NC 27695-7614, USA.

出版信息

Mol Ecol. 2003 May;12(5):1315-23. doi: 10.1046/j.1365-294x.2003.01741.x.

Abstract

The molecular genetics of several signal transduction pathways is well characterized, providing an opportunity to address the nature of the population genetic forces acting on functionally related suites of pleiotropic regulatory genes. Signal transduction is the process by which signals are transmitted from the cell surface to the nucleus or other cellular structures. It plays a fundamental role in regulating a wide range of developmental and physiological processes, many of which are likely to be subject to buffering mechanisms. Here we infer that contrasting selection pressures act on six components of the Ras signal transduction pathway by comparing sequences obtained from 25 alleles of Drosophila melanogaster with one allele of the sibling species D. simulans. The three most upstream components of the cascade, Ras, Drk and polehole, experience strong purifying selection, as they show no fixed amino acid differences between the species and just a handful of rare replacement polymorphisms within D. melanogaster. This portion of the pathway is likely to act as a control point in signal transduction, because the more downstream components Dsor1, corkscrew and Ksr, each show several amino acid replacements between the species. Furthermore, Ksr is nearly monomorphic within D. melanogaster, and application of the HKA and McDonald and Kreitman tests indicate that this gene may have experienced a recent selective sweep, suggesting that modifiers of Ras kinase signalling are the most likely source of quantitative variation associated with this core regulatory pathway.

摘要

几种信号转导途径的分子遗传学已得到充分表征,这为研究作用于功能相关的多效性调控基因组合的群体遗传力量的本质提供了契机。信号转导是信号从细胞表面传递到细胞核或其他细胞结构的过程。它在调节广泛的发育和生理过程中起着基础性作用,其中许多过程可能受到缓冲机制的影响。在这里,我们通过比较从25个黑腹果蝇等位基因和其近缘种拟果蝇的一个等位基因获得的序列,推断出不同的选择压力作用于Ras信号转导途径的六个组成部分。该级联反应最上游的三个组成部分,即Ras、Drk和极孔,经历了强烈的纯化选择,因为它们在这两个物种之间没有固定的氨基酸差异,并且在黑腹果蝇中只有少数罕见的替换多态性。该途径的这一部分可能在信号转导中充当控制点,因为更下游的组成部分Dsor1、螺旋和Ksr在这两个物种之间各自显示出几个氨基酸替换。此外,Ksr在黑腹果蝇中几乎是单态的,并且应用HKA以及麦克唐纳和克里特曼检验表明该基因可能经历了近期的选择性清除,这表明Ras激酶信号传导的修饰因子是与该核心调控途径相关的数量变异的最可能来源。

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