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在双功能酶6-磷酸果糖-2-激酶/果糖-2,6-二磷酸酶的激酶结构域中发现的直接底物-底物相互作用。

A direct substrate-substrate interaction found in the kinase domain of the bifunctional enzyme, 6-phosphofructo-2-kinase/fructose-2,6-bisphosphatase.

作者信息

Kim Song-Gun, Cavalier Michael, El-Maghrabi M Raafat, Lee Yong-Hwan

机构信息

Department of Biological Sciences, Louisiana State University, Baton Rouge, LA 70803, USA.

出版信息

J Mol Biol. 2007 Jun 29;370(1):14-26. doi: 10.1016/j.jmb.2007.03.038. Epub 2007 Mar 21.

Abstract

To understand the molecular basis of a phosphoryl transfer reaction catalyzed by the 6-phosphofructo-2-kinase domain of the hypoxia-inducible bifunctional enzyme 6-phosphofructo-2-kinase/fructose-2,6-bisphosphatase (PFKFB3), the crystal structures of PFKFB3AMPPCPfructose-6-phosphate and PFKFB3ADPphosphoenolpyruvate complexes were determined to 2.7 A and 2.25 A resolution, respectively. Kinetic studies on the wild-type and site-directed mutant proteins were carried out to confirm the structural observations. The experimentally varied liganding states in the active pocket cause no significant conformational changes. In the pseudo-substrate complex, a strong direct interaction between AMPPCP and fructose-6-phosphate (Fru-6-P) is found. By virtue of this direct substrate-substrate interaction, Fru-6-P is aligned with AMPPCP in an orientation and proximity most suitable for a direct transfer of the gamma-phosphate moiety to 2-OH of Fru-6-P. The three key atoms involved in the phosphoryl transfer, the beta,gamma-phosphate bridge oxygen atom, the gamma-phosphorus atom, and the 2-OH group are positioned in a single line, suggesting a direct phosphoryl transfer without formation of a phosphoenzyme intermediate. In addition, the distance between 2-OH and gamma-phosphorus allows the gamma-phosphate oxygen atoms to serve as a general base catalyst to induce an "associative" phosphoryl transfer mechanism. The site-directed mutant study and inhibition kinetics suggest that this reaction will be catalyzed most efficiently by the protein when the substrates bind to the active pocket in an ordered manner in which ATP binds first.

摘要

为了解缺氧诱导双功能酶6-磷酸果糖-2-激酶/果糖-2,6-二磷酸酶(PFKFB3)的6-磷酸果糖-2-激酶结构域催化的磷酸转移反应的分子基础,分别测定了PFKFB3-AMPPCP-6-磷酸果糖和PFKFB3-ADP-磷酸烯醇丙酮酸复合物的晶体结构,分辨率分别为2.7 Å和2.25 Å。对野生型和定点突变蛋白进行了动力学研究,以证实结构观察结果。活性口袋中实验性变化的配体状态不会引起显著的构象变化。在假底物复合物中,发现AMPPCP与6-磷酸果糖(Fru-6-P)之间存在强烈的直接相互作用。凭借这种直接的底物-底物相互作用,Fru-6-P与AMPPCP以最适合将γ-磷酸基团直接转移至Fru-6-P的2-OH的方向和距离排列。参与磷酸转移的三个关键原子,即β,γ-磷酸桥氧原子、γ-磷原子和2-OH基团位于同一条直线上,表明磷酸转移是直接进行的,不形成磷酸酶中间体。此外,2-OH与γ-磷之间的距离使γ-磷酸氧原子能够作为通用碱催化剂,诱导“缔合”磷酸转移机制。定点突变研究和抑制动力学表明,当底物以ATP先结合的有序方式结合到活性口袋时,该蛋白催化此反应的效率最高。

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