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链霉菌中诺加霉素生物合成途径中糖基转移酶 SnogD 的晶体结构

Crystal structure of the glycosyltransferase SnogD from the biosynthetic pathway of nogalamycin in Streptomyces nogalater.

机构信息

Department of Medical Biochemistry and Biophysics, Karolinska Institutet, Stockholm, Sweden.

出版信息

FEBS J. 2012 Sep;279(17):3251-63. doi: 10.1111/j.1742-4658.2012.08711.x. Epub 2012 Aug 17.

Abstract

The glycosyltransferase SnogD from Streptomyces nogalater transfers a nogalamine moiety to the metabolic intermediate 3',4'-demethoxynogalose-1-hydroxynogalamycinone during the final steps of biosynthesis of the aromatic polyketide nogalamycin. The crystal structure of recombinant SnogD, as an apo-enzyme and with a bound nucleotide, 2-deoxyuridine-5'-diphosphate, was determined to 2.6 Å resolution. Reductive methylation of SnogD was crucial for reproducible preparation of diffraction quality crystals due to creation of an additional intermolecular salt bridge between methylated lysine residue Lys384 and Glu374* from an adjacent molecule in the crystal lattice. SnogD is a dimer both in solution and in the crystal, and the enzyme subunit displays a fold characteristic of the GT-B family of glycosyltransferases. Binding of the nucleotide is associated with rearrangement of two active-site loops. Site-directed mutagenesis shows that two active-site histidine residues, His25 and His301, are critical for the glycosyltransferase activities of SnogD both in vivo and in vitro. The crystal structures and the functional data are consistent with a role for His301 in binding of the diphosphate group of the sugar donor substrate, and a function of His25 as a catalytic base in the glycosyl transfer reaction.

摘要

来自游动放线菌的糖基转移酶 SnogD 在芳香聚酮类诺加霉素生物合成的最后步骤中将一个诺加胺部分转移到代谢中间体 3',4'-去甲氧基诺加洛糖-1-羟诺加洛酮。重组 SnogD 的晶体结构,作为无配体酶和与结合的核苷酸 2-脱氧尿苷-5'-二磷酸,被确定为 2.6 Å 分辨率。由于在晶体晶格中相邻分子的甲基化赖氨酸残基 Lys384 和 Glu374*之间形成了额外的分子间盐桥,因此 SnogD 的还原甲基化对于可重现的衍射质量晶体的制备至关重要。SnogD 在溶液中和晶体中都是二聚体,并且酶亚基显示出 GT-B 家族糖基转移酶的折叠特征。核苷酸的结合与两个活性位点环的重排相关。定点突变显示,两个活性位点组氨酸残基 His25 和 His301 对于 SnogD 的糖基转移酶活性无论是在体内还是在体外都是至关重要的。晶体结构和功能数据一致表明 His301 结合糖供体底物的二磷酸基团,而 His25 作为糖基转移反应中的催化碱的功能。

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