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GDP-4-酮-6-脱氧-D-甘露糖-3-脱水酶的结构研究:捕捉到偕二胺形成过程。

A structural study of GDP-4-keto-6-deoxy-D-mannose-3-dehydratase: caught in the act of geminal diamine formation.

作者信息

Cook Paul D, Holden Hazel M

机构信息

Department of Biochemistry, University of Wisconsin, Madison, Wisconsin 53706, USA.

出版信息

Biochemistry. 2007 Dec 11;46(49):14215-24. doi: 10.1021/bi701686s. Epub 2007 Nov 13.

Abstract

Di- and trideoxysugars are an important class of carbohydrates synthesized by certain plants, fungi, and bacteria. Colitose, for example, is a 3,6-dideoxysugar found in the O-antigens of Gram-negative bacteria such as Escherichia coli, Salmonella enterica, Yersinia pseudotuberculosis, and Vibrio cholerae, among others. These types of dideoxysugars are thought to serve as antigenic determinants and to play key roles in bacterial defense and survival. Four enzymes are required for the biochemical synthesis of colitose starting from mannose-1-phosphate. The focus of this investigation, GDP-4-keto-6-deoxy-d-mannose-3-dehydratase (ColD), catalyzes the third step in the pathway, namely the PLP-dependent removal of the C3'-hydroxyl group from GDP-4-keto-6-deoxymannose. Whereas most PLP-dependent enzymes contain an active site lysine, ColD utilizes a histidine as its catalytic acid/base. The ping-pong mechanism of the enzyme first involves the conversion of PLP to PMP followed by the dehydration step. Here we present the three-dimensional structure of a site-directed mutant form of ColD whereby the active site histidine has been replaced with a lysine. The electron density reveals that the geminal diamine, a tetrahedral intermediate in the formation of PMP from PLP, has been trapped within the active site region. Functional assays further demonstrate that this mutant form of ColD cannot catalyze the dehydration reaction.

摘要

二脱氧糖和三脱氧糖是一类由某些植物、真菌和细菌合成的重要碳水化合物。例如,可立糖是一种3,6 - 二脱氧糖,存在于革兰氏阴性菌如大肠杆菌、肠炎沙门氏菌、假结核耶尔森氏菌和霍乱弧菌等的O抗原中。这类二脱氧糖被认为是抗原决定簇,在细菌防御和生存中起关键作用。从甘露糖 - 1 - 磷酸开始生物合成可立糖需要四种酶。本研究的重点,GDP - 4 - 酮 - 6 - 脱氧 - D - 甘露糖 - 3 - 脱水酶(ColD),催化该途径的第三步,即从GDP - 4 - 酮 - 6 - 脱氧甘露糖中依赖磷酸吡哆醛去除C3'-羟基。虽然大多数依赖磷酸吡哆醛的酶含有活性位点赖氨酸,但ColD利用组氨酸作为其催化酸/碱。该酶的乒乓机制首先涉及磷酸吡哆醛转化为磷酸吡哆胺,然后是脱水步骤。在此,我们展示了ColD定点突变体形式的三维结构,其中活性位点组氨酸已被赖氨酸取代。电子密度显示,偕二胺,即从磷酸吡哆醛形成磷酸吡哆胺过程中的四面体中间体,被困在活性位点区域内。功能测定进一步证明,这种ColD突变体形式不能催化脱水反应。

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