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醛脱氢酶(ALDH)家族中硫代酰基辅酶中间体的首个晶体结构:新的辅酶构象及其与催化作用的关联

The first crystal structure of a thioacylenzyme intermediate in the ALDH family: new coenzyme conformation and relevance to catalysis.

作者信息

D'Ambrosio Katia, Pailot Arnaud, Talfournier François, Didierjean Claude, Benedetti Ettore, Aubry André, Branlant Guy, Corbier Catherine

机构信息

LCM3B, Groupe Biocristallographie, UMR 7036, CNRS-UHP, Faculté des Sciences, 54506 Vandoeuvre Cedex, France.

出版信息

Biochemistry. 2006 Mar 7;45(9):2978-86. doi: 10.1021/bi0515117.

Abstract

Crystal structures of several members of the nonphosphorylating CoA-independent aldehyde dehydrogenase (ALDH) family have shown that the peculiar binding mode of the cofactor to the Rossmann fold results in a conformational flexibility for the nicotinamide moiety of the cofactor. This has been hypothesized to constitute an essential feature of the catalytic mechanism because the conformation of the cofactor required for the acylation step is not appropriate for the deacylation step. In the present study, the structure of a reaction intermediate of the E268A-glyceraldehyde 3-phosphate dehydrogenase (GAPN) from Streptococcus mutans, obtained by soaking the crystals of the enzyme/NADP complex with the natural substrate, is reported. The substrate is bound covalently in the four monomers and presents the geometric characteristics expected for a thioacylenzyme intermediate. Control experiments assessed that reduction of the coenzyme has occurred within the crystal. The structure reveals that reduction of the cofactor upon acylation leads to an extensive motion of the nicotinamide moiety with a flip of the reduced pyridinium ring away from the active site without significant changes of the protein structure. This event positions the reduced nicotinamide moiety in a pocket that likely constitutes the exit door for NADPH. Arguments are provided that the structure reported here constitutes a reasonable picture of the first thioacylenzyme intermediate characterized thus far in the ALDH family and that the position of the reduced nicotinamide moiety observed in GAPN is the one suitable for the deacylation step within all of the nonphosphorylating CoA-independent ALDH family.

摘要

非磷酸化的不依赖辅酶A的醛脱氢酶(ALDH)家族中几个成员的晶体结构表明,辅因子与罗斯曼折叠的独特结合模式导致辅因子烟酰胺部分具有构象灵活性。据推测,这构成了催化机制的一个基本特征,因为酰化步骤所需的辅因子构象不适用于脱酰化步骤。在本研究中,报道了变形链球菌E268A-甘油醛-3-磷酸脱氢酶(GAPN)反应中间体的结构,该结构是通过用天然底物浸泡酶/NADP复合物的晶体获得的。底物在四个单体中以共价方式结合,并呈现出硫代酰基酶中间体预期的几何特征。对照实验评估了辅酶在晶体内发生了还原。该结构表明,酰化时辅因子的还原导致烟酰胺部分发生广泛移动,还原的吡啶鎓环翻转离开活性位点,而蛋白质结构没有明显变化。这一事件将还原的烟酰胺部分定位在一个可能构成NADPH出口的口袋中。有证据表明,此处报道的结构构成了迄今为止在ALDH家族中表征的第一个硫代酰基酶中间体的合理图景,并且在GAPN中观察到的还原烟酰胺部分的位置是所有非磷酸化的不依赖辅酶A的ALDH家族中适合脱酰化步骤的位置。

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