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Adaptive evolution of the IgA hinge region in primates

机译:灵长类动物IgA铰链区的适应性进化

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摘要

IgA is a major component that prevents the penetration of pathogenic bacteria into mucosal Surfaces. The I-A antibody is cleaved at the IgA hinge region with high specificity by IgA-specific proteases produced by several pathogenic bacteria. We conducted a genomic sequence analysis of the IgA genes of a wide spectrum of primates, including the first intron and second exon, which consist of the hinge region and the CH2 domain, to find evidence of positive selection. Because the hinge region is quite small, we combined the largest collection of sequences that could be clearly aligned and evaluated the total numbers of synonymous and nonsynonymous substitutions on the phylogenctic tree. The nonsynonymous to synonymous substitution ratio (d(N)/d(S) test) showed that hominoids, Old World monkeys, and New World monkeys have d(N)/d(S) ratios of 5.4, 6.3, and 4.2, respectively. Fisher's exact probability tests showed statistical significance for the Old World monkey. Because the substitution rates of the flanking sequences are more or less similar to the synonymous rates of the hinge region, these high values of d(N)/d(S) should be the result of positive selection at the hinge region. Combining the high sequence variability in each population and the highly accelerated nonsynonymous substitution rates in the hinge region, we conclude that this unusual IgA evolution is a molecular evidence of adaptive evolution possibly caused by the host-parasite relationship.
机译:IgA是防止病原菌渗透到粘膜表面的主要成分。I-A 抗体在 IgA 铰链区域被几种致病菌产生的 IgA 特异性蛋白酶以高特异性切割。我们对多种灵长类动物的 IgA 基因进行了基因组序列分析,包括由铰链区和 CH2 结构域组成的第一内含子和第二外显子,以寻找阳性选择的证据。由于铰链区域非常小,我们组合了可以清晰对齐的最大序列集合,并评估了系统发育树上同义和非同义替换的总数。非同义替换比(d(N)/d(S)检验)表明,类人猿、旧世界猴子和新世界猴子的d(N)/d(S)比分别为5.4、6.3和4.2。费舍尔的精确概率检验显示了旧世界猴子的统计学意义。由于侧翼序列的取代率或多或少与铰链区域的同义率相似,因此这些高值的d(N)/d(S)应该是铰链区域正选择的结果。结合每个群体的高序列变异性和铰链区域高度加速的非同义替换率,我们得出结论,这种不寻常的 IgA 进化可能是由宿主-寄生虫关系引起的适应性进化的分子证据。

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