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Pro103-Arg115环的保守残基参与触发大肠杆菌ADP-葡萄糖焦磷酸化酶的变构反应。

Conserved residues of the Pro103-Arg115 loop are involved in triggering the allosteric response of the Escherichia coli ADP-glucose pyrophosphorylase.

作者信息

Hill Benjamin L, Wong Jennifer, May Brian M, Huerta Fidel B, Manley Tara E, Sullivan Peter R F, Olsen Kenneth W, Ballicora Miguel A

机构信息

Department of Chemistry and Biochemistry, Loyola University Chicago, 1068 W Sheridan Road, Chicago, Illinois.

出版信息

Protein Sci. 2015 May;24(5):714-28. doi: 10.1002/pro.2644. Epub 2015 Mar 12.

Abstract

The synthesis of glycogen in bacteria and starch in plants is allosterically controlled by the production of ADP-glucose by ADP-glucose pyrophosphorylase. Using computational studies, site-directed mutagenesis, and kinetic characterization, we found a critical region for transmitting the allosteric signal in the Escherichia coli ADP-glucose pyrophosphorylase. Molecular dynamics simulations and structural comparisons with other ADP-glucose pyrophosphorylases provided information to hypothesize that a Pro103-Arg115 loop is part of an activation path. It had strongly correlated movements with regions of the enzyme associated with regulation and ATP binding, and a network analysis showed that the optimal network pathways linking ATP and the activator binding Lys39 mainly involved residues of this loop. This hypothesis was biochemically tested by mutagenesis. We found that several alanine mutants of the Pro103-Arg115 loop had altered activation profiles for fructose-1,6-bisphosphate. Mutants P103A, Q106A, R107A, W113A, Y114A, and R115A had the most altered kinetic profiles, primarily characterized by a lack of response to fructose-1,6-bisphosphate. This loop is a distinct insertional element present only in allosterically regulated sugar nucleotide pyrophosphorylases that could have been acquired to build a triggering mechanism to link proto-allosteric and catalytic sites.

摘要

细菌中糖原以及植物中淀粉的合成受到 ADP - 葡萄糖焦磷酸化酶产生 ADP - 葡萄糖的变构调控。通过计算研究、定点诱变和动力学表征,我们在大肠杆菌 ADP - 葡萄糖焦磷酸化酶中发现了一个传递变构信号的关键区域。分子动力学模拟以及与其他 ADP - 葡萄糖焦磷酸化酶的结构比较提供了信息,据此推测 Pro103 - Arg115 环是激活途径的一部分。它与该酶中与调控及 ATP 结合相关的区域有强烈的相关运动,并且网络分析表明连接 ATP 和激活剂结合位点 Lys39 的最佳网络途径主要涉及该环的残基。这一假设通过诱变进行了生化测试。我们发现 Pro103 - Arg115 环的几个丙氨酸突变体改变了对 1,6 - 二磷酸果糖的激活模式。突变体 P103A、Q106A、R107A、W113A、Y114A 和 R115A 的动力学模式改变最大,主要表现为对 1,6 - 二磷酸果糖缺乏反应。这个环是一个独特的插入元件,仅存在于变构调节的糖核苷酸焦磷酸化酶中,可能是为了构建一种触发机制,将原变构位点和催化位点连接起来而获得的。

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