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酶促硫胺素催化中的应变和接近攻击构象:细菌转酮醇酶与供体酮糖5-磷酸木酮糖和6-磷酸果糖形成共价复合物,以及与受体醛糖5-磷酸核糖形成非共价复合物的X射线晶体学快照。

Strain and near attack conformers in enzymic thiamin catalysis: X-ray crystallographic snapshots of bacterial transketolase in covalent complex with donor ketoses xylulose 5-phosphate and fructose 6-phosphate, and in noncovalent complex with acceptor aldose ribose 5-phosphate.

作者信息

Asztalos Peter, Parthier Christoph, Golbik Ralph, Kleinschmidt Martin, Hübner Gerhard, Weiss Manfred S, Friedemann Rudolf, Wille Georg, Tittmann Kai

机构信息

Institut für Biochemie/Biotechnologie, Martin-Luther-University Halle-Wittenberg, Kurt-Mothes-Strasse 3, 06120 Halle/Saale, Germany.

出版信息

Biochemistry. 2007 Oct 30;46(43):12037-52. doi: 10.1021/bi700844m. Epub 2007 Oct 3.

Abstract

Transketolase is a prominent thiamin diphosphate-dependent enzyme in sugar metabolism that catalyzes the reversible transfer of a 2-carbon dihydroxyethyl fragment between a donor ketose and an acceptor aldose. The X-ray structures of transketolase from E. coli in a covalent complex with donor ketoses d-xylulose 5-phosphate (X5P) and d-fructose 6-phosphate (F6P) at 1.47 A and 1.65 A resolution reveal significant strain in the tetrahedral cofactor-sugar adducts with a 25-30 degrees out-of-plane distortion of the C2-Calpha bond connecting the substrates' carbonyl with the C2 of the cofactor's thiazolium part. Both intermediates adopt very similar extended conformations in the active site with a perpendicular orientation of the scissile C2-C3 sugar bond relative to the thiazolium ring. The sugar-derived hydroxyl groups of the intermediates form conserved hydrogen bonds with one Asp side chain, with a cluster of His residues and with the N4' of the aminopyrimidine ring of the cofactor. The phosphate moiety is held in place by electrostatic and hydrogen-bonding interactions with Arg, His, and Ser side chains. With the exception of the thiazolium part of the cofactor, no structural changes are observable during intermediate formation indicating that the active site is poised for catalysis. DFT calculations on both X5P-thiamin and X5P-thiazolium models demonstrate that an out-of-plane distortion of the C2-Calpha bond is energetically more favorable than a coplanar bond. The X-ray structure with the acceptor aldose d-ribose 5-phosphate (R5P) noncovalently bound in the active site suggests that the sugar is present in multiple forms: in a strained ring-closed beta-d-furanose form in C2-exo conformation as well as in an extended acyclic aldehyde form, with the reactive C1 aldo function held close to Calpha of the presumably planar carbanion/enamine intermediate. The latter form of R5P may be viewed as a near attack conformation. The R5P binding site overlaps with those of the leaving group moieties of the covalent donor-cofactor adducts, demonstrating that R5P directly competes with the donor-derived products glyceraldehyde 3-phosphate and erythrose 4-phosphate, which are substrates of the reverse reaction, for the same docking site at the active site and reaction with the DHEThDP enamine.

摘要

转酮醇酶是糖代谢中一种重要的硫胺素二磷酸依赖性酶,它催化一个2 - 碳二羟乙基片段在供体酮糖和受体醛糖之间的可逆转移。大肠杆菌转酮醇酶与供体酮糖d - 木酮糖5 - 磷酸(X5P)和d - 果糖6 - 磷酸(F6P)形成的共价复合物的X射线结构,分辨率分别为1.47 Å和1.65 Å,揭示了四面体辅因子 - 糖加合物中存在显著的应变,连接底物羰基与辅因子噻唑鎓部分C2的C2 - Cα键有25 - 30度的面外扭曲。两种中间体在活性位点都采用非常相似的伸展构象,可裂解的C2 - C3糖键相对于噻唑鎓环呈垂直取向。中间体的糖衍生羟基与一个天冬氨酸侧链、一组组氨酸残基以及辅因子氨基嘧啶环的N4'形成保守的氢键。磷酸基团通过与精氨酸、组氨酸和丝氨酸侧链的静电和氢键相互作用保持在位。除了辅因子的噻唑鎓部分外,在中间体形成过程中未观察到结构变化,这表明活性位点已做好催化准备。对X5P - 硫胺素和X5P - 噻唑鎓模型的密度泛函理论计算表明,C2 - Cα键的面外扭曲在能量上比共平面键更有利。活性位点中非共价结合受体醛糖d - 核糖5 - 磷酸(R5P)的X射线结构表明,糖以多种形式存在:呈C2 - 外向构象的应变闭环β - d - 呋喃糖形式以及伸展的无环醛形式,反应性C1醛基功能靠近推测为平面的碳负离子/烯胺中间体的Cα。R5P的后一种形式可视为近攻击构象。R5P结合位点与共价供体 - 辅因子加合物的离去基团部分的位点重叠,表明R5P与供体衍生产物3 - 磷酸甘油醛和4 - 磷酸赤藓糖直接竞争活性位点的同一对接位点,而3 - 磷酸甘油醛和4 - 磷酸赤藓糖是逆反应的底物,并与DHEThDP烯胺发生反应。

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