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枯草芽孢杆菌甘氨酸氧化酶的结构-功能相关性

Structure-function correlation in glycine oxidase from Bacillus subtilis.

作者信息

Mörtl Mario, Diederichs Kay, Welte Wolfram, Molla Gianluca, Motteran Laura, Andriolo Gabriella, Pilone Mirella S, Pollegioni Loredano

机构信息

Section of Biology, University of Konstanz, P O Box 5560-M656, Italy.

出版信息

J Biol Chem. 2004 Jul 9;279(28):29718-27. doi: 10.1074/jbc.M401224200. Epub 2004 Apr 22.

Abstract

Structure-function relationships of the flavoprotein glycine oxidase (GO), which was recently proposed as the first enzyme in the biosynthesis of thiamine in Bacillus subtilis, has been investigated by a combination of structural and functional studies. The structure of the GO-glycolate complex was determined at 1.8 A, a resolution at which a sketch of the residues involved in FAD binding and in substrate interaction can be depicted. GO can be considered a member of the "amine oxidase" class of flavoproteins, such as d-amino acid oxidase and monomeric sarcosine oxidase. With the obtained model of GO the monomer-monomer interactions can be analyzed in detail, thus explaining the structural basis of the stable tetrameric oligomerization state of GO, which is unique for the GR(2) subfamily of flavooxidases. On the other hand, the three-dimensional structure of GO and the functional experiments do not provide the functional significance of such an oligomerization state; GO does not show an allosteric behavior. The results do not clarify the metabolic role of this enzyme in B. subtilis; the broad substrate specificity of GO cannot be correlated with the inferred function in thiamine biosynthesis, and the structure does not show how GO could interact with ThiS, the following enzyme in thiamine biosynthesis. However, they do let a general catabolic role of this enzyme on primary or secondary amines to be excluded because the expression of GO is not inducible by glycine, sarcosine, or d-alanine as carbon or nitrogen sources.

摘要

最近有人提出,黄素蛋白甘氨酸氧化酶(GO)是枯草芽孢杆菌硫胺素生物合成中的第一种酶,通过结构和功能研究相结合的方法对其结构 - 功能关系进行了研究。GO - 乙醇酸复合物的结构在1.8埃分辨率下确定,在此分辨率下,可以描绘出参与FAD结合和底物相互作用的残基草图。GO可被视为黄素蛋白“胺氧化酶”类的成员,如d - 氨基酸氧化酶和单体肌氨酸氧化酶。利用获得的GO模型,可以详细分析单体 - 单体相互作用,从而解释GO稳定的四聚体寡聚化状态的结构基础,这对于黄素氧化酶的GR(2)亚家族来说是独特的。另一方面,GO的三维结构和功能实验并未提供这种寡聚化状态的功能意义;GO没有表现出别构行为。这些结果并未阐明该酶在枯草芽孢杆菌中的代谢作用;GO广泛的底物特异性与硫胺素生物合成中推断的功能不相关,并且该结构并未显示GO如何与硫胺素生物合成中的下一种酶ThiS相互作用。然而,由于GO的表达不会被甘氨酸、肌氨酸或d - 丙氨酸作为碳源或氮源诱导,因此可以排除该酶在一级或二级胺上的一般分解代谢作用。

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