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果糖-2,6-二磷酸酶的反应机制。亲核催化剂组氨酸256的突变会导致反应途径发生改变。

Reaction mechanism of fructose-2,6-bisphosphatase. A mutation of nucleophilic catalyst, histidine 256, induces an alteration in the reaction pathway.

作者信息

Mizuguchi H, Cook P F, Tai C H, Hasemann C A, Uyeda K

机构信息

Research Service, Dallas Veterans Affairs Medical Center, Dallas, Texas 75216, USA.

出版信息

J Biol Chem. 1999 Jan 22;274(4):2166-75. doi: 10.1074/jbc.274.4.2166.

Abstract

A bifunctional enzyme, fructose-6-phosphate,2-kinase/fructose 2, 6-bisphosphatase (Fru-6-P,2-kinase/Fru-2,6-Pase), catalyzes synthesis and degradation of fructose 2,6-bisphosphate (Fru-2,6-P2). Previously, the rat liver Fru-2,6-Pase reaction (Fru-2,6-P2 --> Fru-6-P + Pi) has been shown to proceed via a phosphoenzyme intermediate with His258 phosphorylated, and mutation of the histidine to alanine resulted in complete loss of activity (Tauler, A., Lin, K., and Pilkis, S. J. (1990) J. Biol. Chem. 265, 15617-15622). In the present study, it is shown that mutation of the corresponding histidine (His256) of the rat testis enzyme decreases activity by less than a factor of 10 with a kcat of 17% compared with the wild type enzyme. Mutation of His390 (in close proximity to His256) to Ala results in a kcat of 12.5% compared with the wild type enzyme. Attempts to detect a phosphohistidine intermediate with the H256A mutant enzyme were unsuccessful, but the phosphoenzyme is detected in the wild type, H390A, R255A, R305S, and E325A mutant enzymes. Data demonstrate that the mutation of His256 induces a change in the phosphatase hydrolytic reaction mechanism. Elimination of the nucleophilic catalyst, H256A, results in a change in mechanism. In the H256A mutant enzyme, His390 likely acts as a general base to activate water for direct hydrolysis of the 2-phosphate of Fru-2,6-P2. Mutation of Arg255 and Arg305 suggests that the arginines probably have a role in neutralizing excess charge on the 2-phosphate and polarizing the phosphoryl for subsequent transfer to either His256 or water. The role of Glu325 is less certain, but it may serve as a general acid, protonating the leaving 2-hydroxyl of Fru-2,6-P2.

摘要

一种双功能酶,果糖-6-磷酸,2-激酶/果糖2,6-二磷酸酶(Fru-6-P,2-激酶/Fru-2,6-Pase),催化果糖2,6-二磷酸(Fru-2,6-P2)的合成与降解。此前研究表明,大鼠肝脏Fru-2,6-Pase反应(Fru-2,6-P2→果糖-6-磷酸+磷酸)通过组氨酸258磷酸化的磷酸酶中间体进行,组氨酸突变为丙氨酸会导致活性完全丧失(陶勒,A.,林,K.,和皮尔基斯,S. J.(1990年)《生物化学杂志》265卷,第15617 - 15622页)。在本研究中,结果表明大鼠睾丸酶相应组氨酸(His256)的突变使活性降低不到10倍,与野生型酶相比,催化常数(kcat)为17%。His390(与His256紧邻)突变为丙氨酸后,与野生型酶相比,催化常数为12.5%。用H256A突变酶检测磷酸组氨酸中间体的尝试未成功,但在野生型、H390A、R255A、R305S和E325A突变酶中检测到了磷酸酶中间体。数据表明,His256的突变诱导了磷酸酶水解反应机制的变化。亲核催化剂H256A的缺失导致了机制的改变。在H256A突变酶中,His390可能作为一般碱来激活水,以直接水解Fru-2,6-P2的2-磷酸。Arg255和Arg305的突变表明,精氨酸可能在中和2-磷酸上的过量电荷以及使磷酰基极化以便随后转移到His256或水上发挥作用。Glu325的作用不太确定,但它可能作为一般酸,使Fru-2,6-P2离去的2-羟基质子化。

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