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Amino acid sequence coevolution in the insect bursicon ligand-receptor system

机译:昆虫bursicon配体-受体系统中的氨基酸序列共同进化

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摘要

The pattern of amino acid residue replacement in the components of the bursicon signaling system (involving the BURSα/BURSβ heterodimer and its receptor BURSrec) was reconstructed across a phylogeny of 17 insect species, in order to test for the co-occurrence of replacements at sets of individual sites. Sets of three or more branches with perfectly concordant changes occurred to a greater extent than expected by chance, given the observed level of amino acid change. The latter sites (SPC sites) were found to have distinctive characteristics: (1) the mean number of changes was significantly lower at SPC sites than that at other sites with multiple changes; (2) SPC sites had a significantly greater tendency toward parallel amino acid changes than other sites with multiple changes, but no greater tendency toward convergent changes; and (3) parallel changes tended to involve relatively similar amino acids, as indicated by relatively low mean chemical distances. The results implicated functional constraint, permitting only a limited subset of amino acids in a given site, as a major factor in causing both parallel amino acid replacement and coordinated amino acid changes in different sites of the same protein and of interacting proteins in this system.
机译:在17种昆虫的系统发育中重建了bursicon信号系统组件(涉及BURSα/BURSβ异二聚体及其受体BURSrec)中氨基酸残基置换的模式,以测试各组置换的共现性单个站点。给定观察到的氨基酸变化水平,发生完全一致变化的三个或更多分支的集合发生的程度比偶然预期的要大。后者(SPC站点)具有明显的特征:(1)SPC站点的平均变化次数明显低于其他具有多个变化的站点; (2)SPC位点具有平行氨基酸变化的趋势明显比具有多个变化的其他位点大,但趋向于趋同变化; (3)平行变化倾向于包含相对相似的氨基酸,如相对较低的平均化学距离所示。结果暗示功能限制,在给定位点中仅允许有限的一部分氨基酸,是导致该系统中同一蛋白质和相互作用蛋白质的不同位点发生平行氨基酸替换和协调氨基酸变化的主要因素。

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