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Enzyme Architecture: Optimization of Transition State Stabilization from a Cation-Phosphodianion Pair

机译:酶体系结构:阳离子-磷阴离子对对过渡态稳定的优化

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摘要

The side chain cation of R269 lies at the surface of L-glycerol 3-phosphate dehydrogenase (GPDH) and forms an ion pair to the phosphodianion of substrate dihydroxyacetone phosphate (DHAP), which is buried at the nonpolar protein interior. The R269A mutation of GPDH results in a 110-fold increase in K_m (2.8 kcal/mol effect) and a 41 000-fold decrease in κ_(cat) (6.3 kcal/mol effect), which corresponds to a 9.1 kcal/mol destabilization of the transition state for GPDH-catalyzed reduction of DHAP by NADH. There is a 6.7 kcal/mol stabilization of the transition state for the R269A mutant GPDH-catalyzed reaction by 1.0 M guanidinium ion, and the transition state for the reaction of the substrate pieces is stabilized by an additional 2.4 kcal/mol by their covalent attachment at wildtype GPDH. These results provide strong support for the proposal that GPDH invests the 11 kcal/mol intrinsic phosphodianion binding energy of DHAP in trapping the substrate at a nonpolar active site, where strong electrostatic interactions are favored, and obtains a 9 kcal/mol return from stabilizing interactions between the side chain cation and transition state trianion. We propose a wide propagation for the catalytic motif examined in this work, which enables strong transition state stabilization from enzyme-phosphodianion pairs.
机译:R269的侧链阳离子位于L-甘油3-磷酸脱氢酶(GPDH)的表面,并与底物二羟基丙酮磷酸酯(DHAP)的磷酸二阴离子形成离子对,该离子对被掩埋在非极性蛋白质内部。 GPDH的R269A突变导致K_m升高110倍(2.8 kcal / mol效应)和κ_(cat)降低41 000倍(6.3 kcal / mol效应),对应于9.1 kcal / mol的去稳定作用NADH对GPDH催化还原DHAP的过渡态的影响通过1.0 M胍离子,R269A突变体GPDH催化的反应的过渡态稳定在6.7 kcal / mol,通过共价键合,底物碎片反应的过渡态又稳定在2.4 kcal / mol。在野生型GPDH。这些结果为GPDH投资DHAP的11 kcal / mol内在的磷酸二氢键结合能将底物捕获在非极性活性位点(有利于强烈的静电相互作用)并从稳定相互作用中获得9 kcal / mol的回报提供了有力支持。在侧链阳离子和过渡态三阴离子之间。我们提议在这项工作中研究的催化基元的广泛传播,这使酶-磷双阴离子对具有很强的过渡态稳定性。

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  • 来源
    《Journal of the American Chemical Society》 |2015年第16期|5312-5315|共4页
  • 作者单位

    Department of Chemistry, University at Buffalo, SUNY, Buffalo, New York 14260-3000, United States;

    Department of Chemistry, University at Buffalo, SUNY, Buffalo, New York 14260-3000, United States;

    Department of Chemistry, University at Buffalo, SUNY, Buffalo, New York 14260-3000, United States;

    Department of Chemistry, University at Buffalo, SUNY, Buffalo, New York 14260-3000, United States;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
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  • 正文语种 eng
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