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首页> 外文期刊>Molecular phylogenetics and evolution >Adaptive evolution in mammalian proteins involved in cochlear outer hair cell electromotility
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Adaptive evolution in mammalian proteins involved in cochlear outer hair cell electromotility

机译:参与耳蜗外毛细胞电动力的哺乳动物蛋白质的适应性进化

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Somatic electromotility in cochlear outer hair cells, as the basis for cochlear amplification, is a mammalian novelty and it is largely dependent upon rapid cell length changes proposed to be mediated by the motor-protein prestin, a member of the solute carrier anion-transport family 26. Thus, one might predict that prestin has specifically evolved in mammals to support this unique mammalian adaptation. Using codon-based likelihood models we found evidences for positive selection in the motor-protein prestin only in the mammalian lineage, supporting the hypothesis that lineage-specific adaptation-driven molecular changes endowed prestin with the ability to mediate somatic electromotility. Moreover, signatures of positive selection were found on the alpha 10, but not the alpha 9 nicotinic cholinergic receptor subunits. An alpha 9 alpha 10-containing nicotinic cholinergic receptor mediates inhibitory olivocochlear efferent effects on hair cells across vertebrates. Our results suggest that evolution-driven modifications of the alpha 10 subunit probably allowed the alpha 9 alpha 10 heterometic receptor to serve a differential function in the mammalian cochlea. Thus, we describe for the first time at the molecular level signatures of adaptive evolution in two outer hair cell proteins only in the lineage leading to mammals. This finding is most likely related with the roles these proteins play in somatic electromotility and/or its fine tuning. (c) 2006 Elsevier Inc. All rights reserved.
机译:耳蜗外毛细胞中的体细胞电动性,作为耳蜗扩增的基础,是哺乳动物的一种新颖事物,它在很大程度上取决于提议由运动蛋白蛋白原(溶质载体阴离子转运家族的成员)介导的快速细胞长度变化。 26.因此,人们可能会预测到,prestin在哺乳动物中已经专门进化,以支持这种独特的哺乳动物适应性。使用基于密码子的可能性模型,我们发现仅在哺乳动物谱系中对运动蛋白蛋白原进行阳性选择的证据,支持了谱系特异性适应性驱动的分子变化赋予蛋白原介导体细胞运动性能力的假说。而且,在α10上发现了阳性选择的特征,但在α9烟碱型胆碱能受体亚基上却没有。含α9α10的烟碱胆碱能受体介导对整个脊椎动物毛细胞的抑制性少核传出作用。我们的结果表明,由进化驱动的α10亚基修饰可能使α9α10异源受体在哺乳动物的耳蜗中发挥不同的功能。因此,我们首次在分子水平上仅在导致哺乳动物的谱系中描述了两个外部毛细胞蛋白中适应性进化的特征。这一发现很可能与这些蛋白质在体细胞电动性和/或其微调中所起的作用有关。 (c)2006 Elsevier Inc.保留所有权利。

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