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Toprim——IA型和II型拓扑异构酶、DnaG型引发酶、OLD家族核酸酶和RecR蛋白中的一个保守催化结构域。

Toprim--a conserved catalytic domain in type IA and II topoisomerases, DnaG-type primases, OLD family nucleases and RecR proteins.

作者信息

Aravind L, Leipe D D, Koonin E V

机构信息

Department of Biology, Texas A&M University, College Station, TX 70843, USA, National Center for Biotechnology Information, National Library of Medicine, National Institutes of Health, Bethesda, MD 20894, USA.

出版信息

Nucleic Acids Res. 1998 Sep 15;26(18):4205-13. doi: 10.1093/nar/26.18.4205.

Abstract

Iterative profile searches and structural modeling show that bacterial DnaG-type primases, small primase-like proteins from bacteria and archaea, type IA and type II topoisomerases, bacterial and archaeal nucleases of the OLD family and bacterial DNA repair proteins of the RecR/M family contain a common domain, designated Toprim (topoisomerase-primase) domain. The domain consists of approximately 100 amino acids and has two conserved motifs, one of which centers at a conserved glutamate and the other one at two conserved aspartates (DxD). Examination of the structure of Topo IA and Topo II and modeling of the Toprim domains of the primases reveal a compact beta/alpha fold, with the conserved negatively charged residues juxtaposed, and inserts seen in Topo IA and Topo II. The conserved glutamate may act as a general base in nucleotide polymerization by primases and in strand rejoining by topoisomerases and as a general acid in strand cleavage by topoisomerases and nucleases. The role of this glutamate in catalysis is supported by site-directed mutagenesis data on primases and Topo IA. The DxD motif may coordinate Mg2+that is required for the activity of all Toprim-containing enzymes. The common ancestor of all life forms could encode a prototype Toprim enzyme that might have had both nucleotidyl transferase and polynucleotide cleaving activity.

摘要

迭代序列搜索和结构建模表明,细菌DnaG型引发酶、细菌和古菌中的小型类引发酶蛋白、IA型和II型拓扑异构酶、OLD家族的细菌和古菌核酸酶以及RecR/M家族的细菌DNA修复蛋白都含有一个共同的结构域,称为Toprim(拓扑异构酶-引发酶)结构域。该结构域由大约100个氨基酸组成,有两个保守基序,其中一个以保守的谷氨酸为中心,另一个以两个保守的天冬氨酸(DxD)为中心。对拓扑异构酶IA和拓扑异构酶II的结构分析以及对引发酶的Toprim结构域的建模揭示了一种紧密的β/α折叠结构,保守的带负电荷残基并列排列,并且在拓扑异构酶IA和拓扑异构酶II中可见插入序列。保守的谷氨酸可能在引发酶的核苷酸聚合以及拓扑异构酶的链重新连接中作为一般碱起作用,在拓扑异构酶和核酸酶的链切割中作为一般酸起作用。引发酶和拓扑异构酶IA的定点诱变数据支持了这种谷氨酸在催化中的作用。DxD基序可能配位含Toprim的所有酶活性所需的Mg2+。所有生命形式的共同祖先可能编码一种原型Toprim酶,它可能同时具有核苷酸转移酶和多核苷酸切割活性。

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