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GT-2家族糖基转移酶SpsA的锰和镁二磷酸胸苷复合物的三维结构:与相关核苷二磷酸糖基转移酶的比较

Three-dimensional structures of the Mn and Mg dTDP complexes of the family GT-2 glycosyltransferase SpsA: a comparison with related NDP-sugar glycosyltransferases.

作者信息

Tarbouriech N, Charnock S J, Davies G J

机构信息

Department of Chemistry, Structural Biology Laboratory, Heslington, Y010 5DD, UK.

出版信息

J Mol Biol. 2001 Dec 7;314(4):655-61. doi: 10.1006/jmbi.2001.5159.

Abstract

The vast majority of glycosidic-bond synthesis in nature is performed by glycosyltransferases, which use activated glycosides as the sugar donor. Typically, the activated leaving group is a nucleoside phosphate, lipid phosphate or phosphate. The nucleotide-sugar-dependent glycosyltransferases fall into over 50 sequence-based families, with the largest and most widespread family of inverting transferases named family GT-2. Here, we present the three-dimensional crystal structure of SpsA, the first and currently the only structural representative from family GT-2, in complex with both Mn-dTDP and Mg-dTDP at a resolution of 2 A. These structures reveal how SpsA and related enzymes may display nucleotide plasticity and permit a comparison of the catalytic centre of this enzyme with those from related sequence families whose three-dimensional structures have recently been determined. Family GT-2 enzymes, together with enzymes from families 7, 13 and 43, appear to form a clan of related structures with identical catalytic apparatus and reaction mechanism.

摘要

自然界中绝大多数糖苷键的合成是由糖基转移酶完成的,这些酶利用活化的糖苷作为糖供体。通常,活化的离去基团是核苷磷酸、脂质磷酸或磷酸。依赖核苷酸糖的糖基转移酶可分为50多个基于序列的家族,其中最大且分布最广的一类转化酶家族名为GT-2家族。在此,我们展示了SpsA的三维晶体结构,它是GT-2家族的首个也是目前唯一的结构代表,与Mn-dTDP和Mg-dTDP形成复合物,分辨率为2埃。这些结构揭示了SpsA及相关酶如何表现出核苷酸可塑性,并允许将该酶的催化中心与最近已确定三维结构的相关序列家族的催化中心进行比较。GT-2家族的酶与7、13和43家族的酶似乎形成了一个具有相同催化装置和反应机制的相关结构家族。

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