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Relatedness Among Contractile and Membrane Proteins: Evidence for Evolution from Common Ancestral Genes

机译:收缩和膜蛋白之间的相关性:从共同祖先基因进化的证据。

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摘要

A statistical method for quantifying the relatedness among proteins was used to perform 2926 paired comparisons of amino-acid composition among 77 contractile and membrane-associated proteins from diverse species and sources. Relatedness of amino-acid compositions correlates with homology of amino-acid sequence. A high degree of relatedness was detected among K+-dependent membrane ATPase of Streptococcus faecalis, coupling factors F1 and CF1 from mitochondria and chloroplasts, outer fiber protein of cilia, ciliary dynein, tubulin, various actins, and myosin subfragment S-1. Heavy meromyosin and tropomyosin were related to each other but not to the first group of proteins. Differences in the degree of methylation may account for some differences in physiological function. Because of their diverse sources, the high degree of relatedness among these proteins is more compatible with evolution from common ancestral genes than with convergent evolution. Squid axon filarin, molluscan paramyosin, and bacterial flagellins appear to be unrelated either to each other or to any of the other proteins studied. Existence of persistent homologies among so many diverse proteins implies conservation of genetic information during evolution by utilization of codons for preferred amino-acid sequences in various proteins.
机译:使用统计学方法量化蛋白质之间的相关性,对来自不同物种和来源的77种收缩和膜相关蛋白质进行了2926对氨基酸组成的配对比较。氨基酸组成的相关性与氨基酸序列的同源性相关。在粪链球菌的K + 依赖性膜ATPase,线粒体和叶绿体的耦合因子F1和CF1,纤毛的外部纤维蛋白,睫毛动力蛋白,微管蛋白,各种肌动蛋白和肌球蛋白亚片段S-1。重肌球蛋白和原肌球蛋白彼此相关,但与第一组蛋白无关。甲基化程度的差异可能解释了生理功能的某些差异。由于它们的来源多种多样,因此这些蛋白质之间的高度相关性与来自共同祖先基因的进化相比,与趋同进化更兼容。鱿鱼轴突丝蛋白,软体动物副肌球蛋白和细菌鞭毛蛋白似乎彼​​此不相关,也不与所研究的任何其他蛋白相关。如此众多的蛋白质之间存在持续的同源性,意味着在进化过程中通过利用各种蛋白质中优选氨基酸序列的密码子来保存遗传信息。

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