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Molecular evolution of type 1 serine/threonine protein phosphatases.

机译:1型丝氨酸/苏氨酸蛋白磷酸酶的分子进化。

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Type 1 serine/threonine protein phosphatases (PP1s) play key roles in many cellular processes. To understand the evolutionary relationships among PP1s from various kingdoms and to provide a valid basis to evaluate the structure-function relationships of these phosphatases, 44 PP1 sequences were aligned, revealing a high sequence similarity among PP1 homologs. About one-third of the total amino acids are conserved in all the sequences studied. Most of these conserved amino acids are located within a 270-amino-acid core region. They include most sites critical to the activity and regulation of PP1s based on three-dimensional structural studies of mammalian PP1s. Positional variation analysis using a sliding window approach revealed two variable blocks in the 270-amino-acid core region. The major variable block corresponds to a subdomain composed of three alpha-helices (alphaG, alphaH, and alphaI) and three beta-sheets (beta7, beta8, and beta9). Phylogenetic analyses suggested that plant and animal PP1s form distinct monophyletic groups. The plant PP1 family contains several subgroups that may be older than the monocot-dicot divergence. In the animal PP1 family, different vertebrate isoforms appear to form distinct subgroups. Relative substitution rate studies indicated that plant PP1s are more diverse than animal PP1s, with an average substitution rate 1.5 times as large as that of animal PP1s. The possible involvement of PP1s in the establishment of multicellularity is discussed. Copyright 1999 Academic Press.
机译:1型丝氨酸/苏氨酸蛋白磷酸酶(PP1)在许多细胞过程中起关键作用。为了了解各个王国的PP1之间的进化关系,并为评估这些磷酸酶的结构-功能关系提供有效的依据,对44个PP1序列进行了比对,揭示了PP1同源物之间的高度序列相似性。在所有研究的序列中,总氨基酸中约有三分之一是保守的。这些保守氨基酸中的大多数位于270个氨基酸的核心区域内。根据哺乳动物PP1的三维结构研究,它们包括大多数对PP1的活性和调节至关重要的位点。使用滑动窗口方法的位置变化分析揭示了在270个氨基酸核心区域中的两个可变嵌段。主要变量块对应于由三个α-螺旋(alphaG,alphaH和alphaI)和三个beta-sheets(beta7,beta8和beta9)组成的子域。系统发育分析表明,植物和动物的PP1形成不同的单系统群体。植物PP1家族包含几个亚组,这些亚组可能早于单子叶植物-双子叶植物的分歧。在动物PP1家族中,不同的脊椎动物同工型似乎形成了不同的亚组。相对替代率研究表明,植物PP1比动物PP1更多样化,平均替代率是动物PP1的1.5倍。讨论了PP1s可能参与多细胞性的建立。版权所有1999 Academic Press。

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