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Duplication and Combination of P-Loop Containing Nucleotide Triphosphate Hydrolases Superfamily

机译:含核苷酸三磷酸酯水解酶超家族的P-环的复制和组合

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摘要

In a genome the set of proteins are formed by duplication and combination of domain superfamilies. P-loop containing nucleotide triphosphate (NTP) hydrolases superfamily is massively duplicated and has the most different partner superfamilies among archaea, bacteria and eukarya. Here, we study the distributions of duplication and combination of p-loop containing NTP hydrolases superfamily in 169 completed genomes. When the total number of domains in a genome is larger, duplication and combination partners of p-loop containing NT'P hydrolases are more. This phenomenon is more obvious in metazoa. The distributions of abundance and combination of partners relate to the functions of the protein. Those distributions in metazoa are very different from those in other kingdoms because of complexity of metazoa. Finally the relationship between duplication and combination of p-loop containing NTP hydrolases superfamily in different genomes is described. It fits a power law.
机译:在基因组中,蛋白质的集合是通过域超家族的复制和组合而形成的。含有三磷酸核苷酸(NTP)水解酶超家族的P环被大量复制,并且在古细菌,细菌和真核生物之间具有最不同的伴侣超家族。在这里,我们研究了169个完整基因组中包含NTP水解酶超家族的p环的重复和组合分布。当基因组中结构域的总数较大时,含有NT'P水解酶的p环的重复和组合伴侣会更多。这种现象在后生动物中更为明显。伴侣的丰度分布和组合与蛋白质的功能有关。由于后生动物的复杂性,后生动物中的分布与其他王国的分布非常不同。最后,描述了不同基因组中含NTP水解酶超家族的p-环的复制与组合之间的关系。它符合幂律。

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