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保留型葡糖基转移酶OtsA的结构为海藻糖合成提供的见解。

Insights into trehalose synthesis provided by the structure of the retaining glucosyltransferase OtsA.

作者信息

Gibson Robert P, Turkenburg Johan P, Charnock Simon J, Lloyd Ruth, Davies Gideon J

机构信息

Department of Chemistry, The University of York, York YO10 5YW, Heslington, United Kingdom.

出版信息

Chem Biol. 2002 Dec;9(12):1337-46. doi: 10.1016/s1074-5521(02)00292-2.

Abstract

Trehalose is a nonreducing disaccharide that plays a major role in many organisms, most notably in survival and stress responses. In Mycobacterium tuberculosis, it plays a central role as the carbohydrate core of numerous immunogenic glycolipids including "cord factor" (trehalose 6,6'-dimycolate). The classical pathway for trehalose synthesis involves the condensation of UDP-glucose and glucose-6-phosphate to afford trehalose-6-phosphate, catalyzed by the retaining glycosyltransferase OtsA. The configurations of two anomeric positions are set simultaneously, resulting in the formation of a double glycoside. The three-dimensional structure of the Escherichia coli OtsA, in complex with both UDP and glucose-6-phosphate, reveals the active site at the interface of two beta/alpha/beta domains. The overall structure and the intimate details of the catalytic machinery reveal a striking similarity to glycogen phosphorylase, indicating a strong evolutionary link and suggesting a common catalytic mechanism.

摘要

海藻糖是一种非还原性二糖,在许多生物体中发挥着重要作用,尤其是在生存和应激反应方面。在结核分枝杆菌中,它作为众多免疫原性糖脂(包括“索状因子”(海藻糖6,6'-二霉菌酸酯))的碳水化合物核心发挥着核心作用。海藻糖合成的经典途径涉及由保留型糖基转移酶OtsA催化UDP-葡萄糖和6-磷酸葡萄糖缩合生成6-磷酸海藻糖。两个异头位置的构型同时确定,从而形成双糖苷。大肠杆菌OtsA与UDP和6-磷酸葡萄糖形成复合物的三维结构揭示了两个β/α/β结构域界面处的活性位点。催化机制的整体结构和详细细节显示出与糖原磷酸化酶惊人的相似性,表明存在很强的进化联系并暗示有共同的催化机制。

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