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阴道毛滴虫氢化酶体苹果酸酶的一级结构及其与同源酶的关系。

Primary structure of the hydrogenosomal malic enzyme of Trichomonas vaginalis and its relationship to homologous enzymes.

作者信息

Hrdý I, Müller M

机构信息

Rockefeller University, New York, New York 10021, USA.

出版信息

J Eukaryot Microbiol. 1995 Sep-Oct;42(5):593-603. doi: 10.1111/j.1550-7408.1995.tb05913.x.

Abstract

The complete nucleotide sequence has been established for two genes (maeA and maeB) coding for different subunits of the hydrogenosomal malic enzyme [malate dehydrogenase (decarboxylating) EC 1.1.1.39] of Trichomonas vaginalis. Two further genes (maeC and maeD) of this enzyme have been partially sequenced. The complete open reading frames code for polypeptides of 567 amino acids in length. These two open reading frames are similar with less than 12 percent pairwise nucleotide differences and less than 9 percent pairwise amino acid differences. The open reading frames of the two partially sequenced genes correspond to the amino-terminal part of the polypeptides coded and are similar to the corresponding parts of the completely sequenced ones. The deduced translation products of the two complete genes differ in their calculated pI values by 1.5 pH unit. The genes code for polypeptides which contain 12 or 11 amino-terminal amino-acyl residues not present in the proteins isolated from the cell. Other hydrogenosomal enzymes also have similar amino-terminal extensions which probably play a role in organellar targeting and translocation of the newly synthesized polypeptides. A comparison of 19 related enzymes from bacteria and eukaryotes with the maeA product revealed 34-45 percent amino acid identity. Phylogenetic reconstruction based on nonconservative amino acid differences with maximum parsimony (phylogenetic analysis using parsimony, PAUP) and distance based (neighbor-joining, NJ) methods showed that the T. vaginalis enzyme is the most divergent of all eukaryotic malic enzymes, indicating its long independent evolutionary history.

摘要

已确定阴道毛滴虫氢化酶体苹果酸酶[苹果酸脱氢酶(脱羧),EC 1.1.1.39]不同亚基的两个基因(maeA和maeB)的完整核苷酸序列。该酶的另外两个基因(maeC和maeD)已进行了部分测序。完整的开放阅读框编码长度为567个氨基酸的多肽。这两个开放阅读框相似,成对核苷酸差异小于12%,成对氨基酸差异小于9%。两个部分测序基因的开放阅读框对应于所编码多肽的氨基末端部分,并且与完全测序基因的相应部分相似。两个完整基因推导的翻译产物在计算的pI值上相差1.5个pH单位。这些基因编码的多肽含有12个或11个细胞中分离的蛋白质中不存在的氨基末端氨基酰基残基。其他氢化酶体酶也有类似的氨基末端延伸,这可能在新合成多肽的细胞器靶向和转运中起作用。将来自细菌和真核生物的19种相关酶与maeA产物进行比较,发现氨基酸同一性为34%-45%。基于非保守氨基酸差异,采用最大简约法(简约法系统发育分析,PAUP)和基于距离法(邻接法,NJ)进行系统发育重建,结果表明阴道毛滴虫酶是所有真核苹果酸酶中分歧最大的,表明其具有漫长的独立进化史。

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