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肠炎沙门氏菌氨基咪唑核糖苷激酶的晶体结构:对核糖激酶超家族进化的启示

Crystal structure of an aminoimidazole riboside kinase from Salmonella enterica: implications for the evolution of the ribokinase superfamily.

作者信息

Zhang Yan, Dougherty Michael, Downs Diana M, Ealick Steven E

机构信息

Department of Molecular Biology and Genetics, Cornell University, Ithaca, NY 14853, USA.

出版信息

Structure. 2004 Oct;12(10):1809-21. doi: 10.1016/j.str.2004.07.020.

Abstract

The crystal structures of a Salmonella enterica aminoimidazole riboside (AIRs) kinase, its complex with the substrate AIRs, and its complex with AIRs and an ATP analog were determined at 2.6 angstroms, 2.9 angstroms, and 2.7 angstroms, respectively. The product of the Salmonella-specific gene stm4066, AIRs kinase, is a homodimer with one active site per monomer. The core structure, consisting of an eight-stranded beta sheet flanked by eight alpha helices, indicates that AIRs kinase is a member of the ribokinase superfamily. Unlike ribokinase and adenosine kinase in this superfamily, AIRs kinase does not show significant conformational changes upon substrate binding. The active site is covered by a lid formed by residues 16-28 and 86-100. A comparison of the structure of AIRs kinase with other ribokinase superfamily members suggests that the active site lid and conformational changes that occur upon substrate binding may be advanced features in the evolution of the ribokinase superfamily.

摘要

分别在2.6埃、2.9埃和2.7埃的分辨率下测定了肠炎沙门氏菌氨基咪唑核糖苷(AIRs)激酶、其与底物AIRs的复合物以及其与AIRs和一种ATP类似物的复合物的晶体结构。沙门氏菌特异性基因stm4066的产物AIRs激酶是一种同型二聚体,每个单体有一个活性位点。由八条α螺旋两侧的八链β折叠组成的核心结构表明,AIRs激酶是核糖激酶超家族的成员。与该超家族中的核糖激酶和腺苷激酶不同,AIRs激酶在底物结合时不显示明显的构象变化。活性位点被由16 - 28位和86 - 100位残基形成的盖子覆盖。将AIRs激酶的结构与其他核糖激酶超家族成员进行比较表明,活性位点盖子以及底物结合时发生的构象变化可能是核糖激酶超家族进化中的先进特征。

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