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多杀巴斯德菌唾液酸转移酶与受体和供体类似物复合物的晶体结构揭示了底物结合位点和催化机制。

Crystal structures of Pasteurella multocida sialyltransferase complexes with acceptor and donor analogues reveal substrate binding sites and catalytic mechanism.

作者信息

Ni Lisheng, Chokhawala Harshal A, Cao Hongzhi, Henning Ryan, Ng Laura, Huang Shengshu, Yu Hai, Chen Xi, Fisher Andrew J

机构信息

Department of Chemistry, University of California, One Shields Avenue, Davis, California 95616, USA.

出版信息

Biochemistry. 2007 May 29;46(21):6288-98. doi: 10.1021/bi700346w. Epub 2007 May 8.

Abstract

Sialyltransferases are key enzymes involved in the biosynthesis of biologically and pathologically important sialic acid-containing molecules in nature. Binary X-ray crystal structures of a multifunctional Pasteurella multocida sialyltransferase (Delta24PmST1) with a donor analogue CMP-3F(a)Neu5Ac or CMP-3F(e)Neu5Ac were determined at 2.0 and 1.9 A resolutions, respectively. Ternary X-ray structures of the protein in complex with CMP or a donor analogue CMP-3F(a)Neu5Ac and an acceptor lactose have been determined at 2.0 and 2.27 A resolutions, respectively. This represents the first sialyltransferase structure and the first GT-B-type glycosyltransferase structure that is bound to both a donor analogue and an acceptor simultaneously. The four structures presented here reveal that binding of the nucleotide-activated donor sugar causes a buried tryptophan to flip out of the protein core to interact with the donor sugar and helps define the acceptor sugar binding site. Additionally, key amino acid residues involved in the catalysis have been identified. Structural and kinetic data support a direct displacement mechanism involving an oxocarbenium ion-like transition state assisted with Asp141 serving as a general base to activate the acceptor hydroxyl group.

摘要

唾液酸转移酶是自然界中参与生物合成和病理合成重要含唾液酸分子的关键酶。多功能多杀巴斯德菌唾液酸转移酶(Delta24PmST1)与供体类似物CMP - 3F(a)Neu5Ac或CMP - 3F(e)Neu5Ac的二元X射线晶体结构分别在2.0 Å和1.9 Å分辨率下测定。该蛋白质与CMP或供体类似物CMP - 3F(a)Neu5Ac和受体乳糖形成复合物的三元X射线结构分别在2.0 Å和2.27 Å分辨率下测定。这代表了第一个同时结合供体类似物和受体的唾液酸转移酶结构以及第一个GT - B型糖基转移酶结构。这里展示的四个结构表明,核苷酸激活的供体糖的结合导致一个埋藏的色氨酸从蛋白质核心翻转出来与供体糖相互作用,并有助于确定受体糖结合位点。此外,还鉴定了参与催化的关键氨基酸残基。结构和动力学数据支持一种直接取代机制,该机制涉及一个类氧鎓离子过渡态,Asp141作为通用碱激活受体羟基。

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