首页> 外文期刊>Acta Chiropterologica >Parallel Amino Acid Deletions of Prestin Protein in Two Dramatically Divergent Bat Lineages Suggest the Complexity of the Evolution of Echolocation in Bats
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Parallel Amino Acid Deletions of Prestin Protein in Two Dramatically Divergent Bat Lineages Suggest the Complexity of the Evolution of Echolocation in Bats

机译:两种显着发散的蝙蝠谱系中普生素蛋白的平行氨基酸缺失表明蝙蝠呼应器演变的复杂性

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The membrane motor protein, prestin, encoded by gene Prestin, provides the electromotility to cochlear outer hair cells (OHCs) and is therefore considered responsible for cochlea's high sensitivity to sound waves. Echolocating bats use ultrasound for orientation and hunting.In this study, we obtained the complete Prestin coding sequences of 60 mammal taxa. Alignment results detected the same 3-bp deletion mutation (c.1833_1835del in exon 18) in two bat lineages, Pteropodidae and Emballonuroidea, and caused an amino acid deletion (p.Asp611del). These twobat lineages orient with vision and echolocation, separately, suggesting that the parallel deletion occurred independently after their split. Homology modeling of the protein structures indicated contrasting structural variations after the deletion of this amino acid. Estimation of the distributionsof the surface electrostatic potential coincided with the structural variation. Our findings suggest the complexity of the echolocation in bats but functionality analyses are needed to illuminate it.
机译:由基因普雷斯汀编码的膜电机蛋白,普生素,为耳蜗外毛细胞(OHCs)提供了电力速率,因此认为对耳蜗对声波的高敏感性负责。呼应蝙蝠使用超声波定位和狩猎。本研究,我们获得了60个哺乳动物群的完全普雷斯汀编码序列。在两个蝙蝠谱系中,Pteropodidae和empultonuroidea检测到相同的3-BP缺失突变(外显子18中的C.1833_1835del),并导致氨基酸缺失(P.asp611del)。这些Twobat谱系与视野和呼应分别定位,表明在分裂后独立发生并行删除。蛋白质结构的同源性建模表明缺失该氨基酸后的对比结构变化。估计表面静电电位的分布与结构变化一致。我们的研究结果表明,需要蝙蝠的响声分配而且需要函数分析来照亮它。

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