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碳酸酐酶同工酶的起源与分子进化。

Origins and molecular evolution of the carbonic anhydrase isozymes.

作者信息

Hewett-Emmett D, Hopkins P J, Tashian R E, Czelusniak J

出版信息

Ann N Y Acad Sci. 1984;429:338-58. doi: 10.1111/j.1749-6632.1984.tb12359.x.

Abstract

Work on membrane-bound and subcellular forms of CA at the protein level, and the possibility of multiple forms of the mouse CA II gene at the DNA level, indicate that CA may represent an extensive multigene family. A method for classifying newly sequenced CA molecules, or genes encoding them, is discussed. Phylogenetic trees based on the existing sequence data are presented and discussed in terms of gene evolution. The active-site residues of CA II have been more conserved in evolution than those of CA I or CA III. After the gene duplications, CA III and CA I initially evolved more rapidly than CA II. Since the mammalian radiation, the CA II molecule as a whole has been accepting substitutions more frequently than CA I, which in turn is evolving more rapidly than CA III. These findings can be explained if external regions of CA I and CA III have been conserved in evolution owing to interactions with other molecules. Two such regions appear to be residues 18-37 in CA I and 231-250 in CA III. Spinach CA was purified and a small amount of sequence data collected. The difficulty in aligning it with animal CAs suggests that a plant CA may not be suitable to shed light on the active site and character of the ancestral eukaryote CA.

摘要

在蛋白质水平上对碳酸酐酶(CA)的膜结合形式和亚细胞形式的研究,以及在DNA水平上小鼠CA II基因存在多种形式的可能性,表明CA可能代表一个广泛的多基因家族。本文讨论了一种对新测序的CA分子或编码它们的基因进行分类的方法。基于现有序列数据构建了系统发育树,并从基因进化的角度进行了展示和讨论。在进化过程中,CA II的活性位点残基比CA I或CA III的活性位点残基更为保守。基因复制后,CA III和CA I最初的进化速度比CA II快。自哺乳动物辐射以来,CA II分子整体接受替换的频率比CA I更高,而CA I的进化速度又比CA III快。如果CA I和CA III的外部区域由于与其他分子的相互作用而在进化中得以保守,那么这些发现就可以得到解释。CA I中18 - 37位残基和CA III中231 - 250位残基似乎就是这样的两个区域。菠菜CA被纯化,并收集了少量序列数据。将其与动物CA进行比对时遇到的困难表明,植物CA可能不适用于阐明原始真核生物CA的活性位点和特征。

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