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葡萄糖-1-磷酸尿苷酰转移酶的活性位点几何结构。

Active site geometry of glucose-1-phosphate uridylyltransferase.

作者信息

Thoden James B, Holden Hazel M

机构信息

Department of Biochemistry, University of Wisconsin, Madison 53706-1544, USA.

出版信息

Protein Sci. 2007 Jul;16(7):1379-88. doi: 10.1110/ps.072864707. Epub 2007 Jun 13.

Abstract

Glucose-1-phosphate uridylyltransferase, or UGPase, catalyzes the production of UDP-glucose from glucose-1-phosphate and UTP. Because of the biological role of UDP-glucose in glycogen synthesis and in the formation of glycolipids, glycoproteins, and proteoglycans, the enzyme is widespread in nature. Recently this laboratory reported the three-dimensional structure of UGPase from Escherichia coli. While the initial X-ray analysis revealed the overall fold of the enzyme, details concerning its active site geometry were limited because crystals of the protein complexed with either substrates or products could never be obtained. In an effort to more fully investigate the active site geometry of the enzyme, UGPase from Corynebacterium glutamicum was subsequently cloned and purified. Here we report the X-ray structure of UGPase crystallized in the presence of both magnesium and UDP-glucose. Residues involved in anchoring the ligand to the active site include the polypeptide chain backbone atoms of Ala 20, Gly 21, Gly 117, Gly 180, and Ala 214, and the side chains of Glu 36, Gln 112, Asp 143, Glu 201, and Lys 202. Two magnesium ions are observed coordinated to the UDP-glucose. An alpha- and a beta-phosphoryl oxygen, three waters, and the side chain of Asp 142 ligate the first magnesium, whereas the second ion is coordinated by an alpha-phosphoryl oxygen and five waters. The position of the first magnesium is conserved in both the glucose-1-phosphate thymidylyltransferases and the cytidylyltransferases. The structure presented here provides further support for the role of the conserved magnesium ion in the catalytic mechanisms of the sugar-1-phosphate nucleotidylyltransferases.

摘要

葡萄糖-1-磷酸尿苷酰转移酶,即UGPase,催化由葡萄糖-1-磷酸和UTP生成UDP-葡萄糖。由于UDP-葡萄糖在糖原合成以及糖脂、糖蛋白和蛋白聚糖形成中的生物学作用,该酶在自然界中广泛存在。最近本实验室报道了大肠杆菌UGPase的三维结构。虽然最初的X射线分析揭示了该酶的整体折叠,但由于从未获得与底物或产物复合的蛋白质晶体,其活性位点几何结构的细节有限。为了更全面地研究该酶的活性位点几何结构,随后克隆并纯化了谷氨酸棒杆菌的UGPase。在此我们报道在镁离子和UDP-葡萄糖存在下结晶的UGPase的X射线结构。参与将配体锚定到活性位点的残基包括Ala 20、Gly 21、Gly 117、Gly 180和Ala 214的多肽链主链原子,以及Glu 36、Gln 112、Asp 143、Glu 201和Lys 202的侧链。观察到两个镁离子与UDP-葡萄糖配位。一个α-和一个β-磷酰氧、三个水分子以及Asp 142的侧链与第一个镁离子配位,而第二个离子由一个α-磷酰氧和五个水分子配位。第一个镁离子的位置在葡萄糖-1-磷酸胸苷酰转移酶和胞苷酰转移酶中都是保守的。此处呈现的结构为保守镁离子在糖-1-磷酸核苷酸转移酶催化机制中的作用提供了进一步的支持。

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