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首页> 外文期刊>Human Genetics >Positive selection in MAOA gene is human exclusive: determination of the putative amino acid change selected in the human lineage.
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Positive selection in MAOA gene is human exclusive: determination of the putative amino acid change selected in the human lineage.

机译:MAOA基因中的阳性选择是人类专有的:确定在人类谱系中选择的假定氨基酸变化。

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摘要

Monoamine oxidase A (MAOA) is the X-linked gene responsible for deamination and subsequent degradation of several neurotransmitters and other amines. Among other activities, the gene has been shown to play a role in locomotion, circadian rhythm, and pain sensitivity and to have a critical influence on behavior and cognition. Previous studies have reported a non-neutral evolution of the gene attributable to positive selection in the human lineage. To determine whether this selection was human-exclusive or shared with other species, we performed a population genetic analysis of the pattern of nucleotide variation in non-human species, including bonobo, chimpanzee, gorilla, and orangutan. Footprints of positive selection were absent in all analyzed species, suggesting that positive selection has been recent and unique to humans. To determine which human-unique genetic changes could have been responsible for this differential evolution, the coding region of the gene was compared between human, chimpanzee, and gorilla. Only one human exclusive non-conservative change is present in the gene: Glu151Lys. This human substitution affects protein dimerization according to a three-dimensional structural model that predicts a non-negligible functional shift. This is the only candidate position at present to have been selected to fixation in humans during an episode of positive selection. Divergence analysis among species has shown that, even under positive selection in the human lineage, the MAOA gene did not experience accelerated evolution in any of the analyzed lineages, and that tools such as K(a)/ K(s) would not have detected the selective history of the gene.
机译:单胺氧化酶A(MAOA)是X连锁基因,负责几种神经递质和其他胺的脱氨基作用和随后的降解。在其他活动中,该基因已显示在运动,昼夜节律和疼痛敏感性中起作用,并对行为和认知有重​​要影响。先前的研究报道了该基因的非中性进化,归因于人类谱系中的阳性选择。为了确定此选择是人类专有的还是与其他物种共有的,我们对非人类物种(包括bo黑猩猩,黑猩猩,大猩猩和猩猩)的核苷酸变异模式进行了群体遗传分析。在所有分析的物种中都没有正向选择的足迹,这表明正向选择是最近才出现的并且是人类独有的。为了确定哪些人类独特的遗传变化可能是这种差异性进化的原因,在人类,黑猩猩和大猩猩之间比较了该基因的编码区。该基因中仅存在一个人类排他的非保守变化:Glu151Lys。根据预测不可忽略的功能转变的三维结构模型,这种人类替代作用会影响蛋白质二聚化。这是目前在阳性选择发作期间已被选择固定在人体内的唯一候选位置。物种间的差异分析表明,即使在人类谱系中进行积极选择,MAOA基因也不会在任何分析的谱系中经历加速的进化,并且诸如K(a)/ K(s)之类的工具也无法检测到基因的选择历史。

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