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来自克氏锥虫甘油醛-3-磷酸脱氢酶催化反应的硫代酰基中间体类似物的两个磷酸结合位点的晶体结构证据。

Evidence for the two phosphate binding sites of an analogue of the thioacyl intermediate for the Trypanosoma cruzi glyceraldehyde-3-phosphate dehydrogenase-catalyzed reaction, from its crystal structure.

作者信息

Castilho Marcelo S, Pavão Fernando, Oliva Glaucius, Ladame Sylvain, Willson Michèle, Périé Jacques

机构信息

Instituto de Física de São Carlos, USP, P.O. Box 369, 13560-970 São Carlos, SP, Brazil.

出版信息

Biochemistry. 2003 Jun 17;42(23):7143-51. doi: 10.1021/bi0206107.

Abstract

Glyceraldehyde-3-phosphate dehydrogenase (GAPDH) catalyzes the reversible oxidative phosphorylation of d-glyceraldehyde 3-phosphate (GAP) into d-glycerate 1,3-bisphosphate (1,3-diPG) in the presence of NAD(+) and inorganic phosphate (P(i)). Within the active site, two anion-binding sites were ascribed to the binding of the C3 phosphate of GAP (P(s)) and to the binding of the attacking phosphate ion (P(i)). The role played by these two sites in the catalytic mechanism in connection with the functional role of coenzyme exchange (NADH-NAD(+) shuttle) has been investigated by several studies leading to the C3 phosphate flipping model proposed by Skarzynski et al. [Skarzynski, T., Moody, P. C., and Wonacott, A. J. (1987) J. Mol. Biol. 193, 171-187]. This model has not yet received direct confirmation. To gain further insight into the role of both sites, we synthesized irreversible inhibitors which form with the essential cysteine residue a thioacyl enzyme analogue of the catalytic intermediate. Here we report the refined glycosomal Trypanosoma cruzi GAPDH in complex with a covalently bound GAP analogue at an improved resolution of 2.0-2.5 A. For this holo-thioacyl enzyme complex, a flip-flop movement is clearly characterized, the change from the P(i) to the P(s) binding site being correlated with the coenzyme exchange step: the weaker interaction of the intermediate when bound at the P(s) site with the cofactor allows its release and also the binding of the inorganic phosphate for the next catalytic step. This result gives strong experimental support for the generally accepted flip-flop model of the catalytic mechanism in GAPDH.

摘要

甘油醛-3-磷酸脱氢酶(GAPDH)在烟酰胺腺嘌呤二核苷酸(NAD⁺)和无机磷酸盐(P(i))存在的情况下,催化d-甘油醛3-磷酸(GAP)可逆氧化磷酸化为d-甘油酸1,3-二磷酸(1,3-二磷酸甘油酸,1,3-diPG)。在活性位点内,两个阴离子结合位点分别负责结合GAP的C3磷酸基团(P(s))和攻击的磷酸根离子(P(i))。几项研究探讨了这两个位点在催化机制中与辅酶交换(NADH-NAD⁺穿梭)功能作用的关联,从而得出了Skarzynski等人提出的C3磷酸基团翻转模型[Skarzynski, T., Moody, P. C., and Wonacott, A. J. (1987) J. Mol. Biol. 193, 171 - 187]。该模型尚未得到直接证实。为了进一步深入了解这两个位点的作用,我们合成了不可逆抑制剂,它们与必需的半胱氨酸残基形成催化中间体的硫代酰基酶类似物。在此,我们报道了克氏锥虫糖体GAPDH与共价结合的GAP类似物复合物的优化结构,分辨率提高到了2.0 - 2.5 Å。对于这种全酶 - 硫代酰基酶复合物,明显呈现出一种翻转运动,从P(i)结合位点到P(s)结合位点的变化与辅酶交换步骤相关:中间体在P(s)位点与辅因子结合较弱,这使其得以释放,同时也为下一个催化步骤结合无机磷酸盐创造了条件。这一结果为GAPDH催化机制中普遍接受的翻转模型提供了有力的实验支持。

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