[MOLECULAR EVOLUTION OF ION CHANNELS: AMINO ACID SEQUENCES AND 3D STRUCTURES].

V S Korkosh, B S Zhorov, D B Tikhonov
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Abstract

An integral part of modern evolutionary biology is comparative analysis of structure and function of macromolecules such as proteins. The first and critical step to understand evolution of homologous proteins is their amino acid sequence alignment. However, standard algorithms fop not provide unambiguous sequence alignments for proteins of poor homology. More reliable results can be obtained by comparing experimental 3D structures obtained at atomic resolution, for instance, with the aid of X-ray structural analysis. If such structures are lacking, homology modeling is used, which may take into account indirect experimental data on functional roles of individual amino-acid residues. An important problem is that the sequence alignment, which reflects genetic modifications, does not necessarily correspond to the functional homology. The latter depends on three-dimensional structures which are critical for natural selection. Since alignment techniques relying only on the analysis of primary structures carry no information on the functional properties of proteins, including 3D structures into consideration is very important. Here we consider several examples involving ion channels and demonstrate that alignment of their three-dimensional structures can significantly improve sequence alignments obtained by traditional methods.

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离子通道的分子演化:氨基酸序列和三维结构。
现代进化生物学的一个组成部分是对大分子(如蛋白质)的结构和功能进行比较分析。了解同源蛋白进化的第一步和关键一步是它们的氨基酸序列比对。然而,对于同源性差的蛋白质,标准算法往往不能提供明确的序列比对。通过比较在原子分辨率下获得的实验三维结构,例如借助x射线结构分析,可以获得更可靠的结果。如果缺乏这样的结构,则使用同源性建模,这可以考虑到单个氨基酸残基的功能作用的间接实验数据。一个重要的问题是,序列比对,反映遗传修饰,并不一定对应于功能同源性。后者依赖于对自然选择至关重要的三维结构。由于仅依赖于初级结构分析的比对技术无法提供有关蛋白质功能特性的信息,因此考虑三维结构是非常重要的。在这里,我们考虑了几个涉及离子通道的例子,并证明了它们的三维结构的对齐可以显着改善传统方法获得的序列对齐。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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