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锥虫体内编辑体蛋白的比较分析

Comparative analysis of editosome proteins in trypanosomatids.

作者信息

Worthey Elizabeth A, Schnaufer Achim, Mian I Saira, Stuart Kenneth, Salavati Reza

机构信息

Seattle Biomedical Research Institute, Seattle, WA 98109, USA.

出版信息

Nucleic Acids Res. 2003 Nov 15;31(22):6392-408. doi: 10.1093/nar/gkg870.

Abstract

Detailed comparisons of 16 editosome proteins from Trypanosoma brucei, Trypanosoma cruzi and Leishmania major identified protein motifs associated with catalysis and protein or nucleic acid interactions that suggest their functions in RNA editing. Five related proteins with RNase III-like motifs also contain a U1-like zinc finger and either dsRBM or Pumilio motifs. These proteins may provide the endoribonuclease function in editing. Two other related proteins, at least one of which is associated with U-specific 3' exonuclease activity, contain two putative nuclease motifs. Thus, editosomes contain a plethora of nucleases or proteins presumably derived from nucleases. Five additional related proteins, three of which have zinc fingers, each contain a motif associated with an OB fold; the TUTases have C-terminal folds reminiscent of RNA binding motifs, thus indicating the presence of numerous nucleic acid and/or protein binding domains, as do the two RNA ligases and a RNA helicase, which provide for additional catalytic steps in editing. These data indicate that trypanosomatid RNA editing is orchestrated by a variety of domains for catalysis, molecular interaction and structure. These domains are generally conserved within other protein families, but some are found in novel combinations in the editosome proteins.

摘要

对来自布氏锥虫、克氏锥虫和硕大利什曼原虫的16种编辑体蛋白进行的详细比较,确定了与催化作用以及蛋白质或核酸相互作用相关的蛋白质基序,这表明它们在RNA编辑中的功能。五个具有RNase III样基序的相关蛋白还含有一个U1样锌指以及dsRBM或Pumilio基序。这些蛋白可能在编辑过程中提供核糖核酸内切酶功能。另外两个相关蛋白,其中至少一个与U特异性3'核酸外切酶活性相关,含有两个假定的核酸酶基序。因此,编辑体包含大量核酸酶或可能源自核酸酶的蛋白质。另外五个相关蛋白,其中三个具有锌指,每个都含有一个与OB折叠相关的基序;末端尿苷转移酶具有类似于RNA结合基序的C末端折叠,因此表明存在大量核酸和/或蛋白质结合结构域,两个RNA连接酶和一个RNA解旋酶也是如此,它们在编辑过程中提供额外的催化步骤。这些数据表明,锥虫的RNA编辑是由多种用于催化、分子相互作用和结构的结构域精心编排的。这些结构域在其他蛋白质家族中通常是保守的,但有些在编辑体蛋白中以新的组合形式出现。

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