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磷酸丙糖异构酶催化作用中环状钳位侧链的作用

Role of Loop-Clamping Side Chains in Catalysis by Triosephosphate Isomerase.

作者信息

Zhai Xiang, Amyes Tina L, Richard John P

机构信息

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

出版信息

J Am Chem Soc. 2015 Dec 9;137(48):15185-97. doi: 10.1021/jacs.5b09328. Epub 2015 Nov 30.

Abstract

The side chains of Y208 and S211 from loop 7 of triosephosphate isomerase (TIM) form hydrogen bonds to backbone amides and carbonyls from loop 6 to stabilize the caged enzyme-substrate complex. The effect of seven mutations [Y208T, Y208S, Y208A, Y208F, S211G, S211A, Y208T/S211G] on the kinetic parameters for TIM catalyzed reactions of the whole substrates dihydroxyacetone phosphate and d-glyceraldehyde 3-phosphate [(k(cat)/K(m))(GAP) and (k(cat)/K(m))DHAP] and of the substrate pieces glycolaldehyde and phosphite dianion (k(cat)/K(HPi)K(GA)) are reported. The linear logarithmic correlation between these kinetic parameters, with slope of 1.04 ± 0.03, shows that most mutations of TIM result in an identical change in the activation barriers for the catalyzed reactions of whole substrate and substrate pieces, so that the transition states for these reactions are stabilized by similar interactions with the protein catalyst. The second linear logarithmic correlation [slope = 0.53 ± 0.16] between k(cat) for isomerization of GAP and K(d)(⧧) for phosphite dianion binding to the transition state for wildtype and many mutant TIM-catalyzed reactions of substrate pieces shows that ca. 50% of the wildtype TIM dianion binding energy, eliminated by these mutations, is expressed at the wildtype Michaelis complex, and ca. 50% is only expressed at the wildtype transition state. Negative deviations from this correlation are observed when the mutation results in a decrease in enzyme reactivity at the catalytic site. The main effect of Y208T, Y208S, and Y208A mutations is to cause a reduction in the total intrinsic dianion binding energy, but the effect of Y208F extends to the catalytic site.

摘要

磷酸丙糖异构酶(TIM)环7上的Y208和S211的侧链与环6的主链酰胺和羰基形成氢键,以稳定笼状酶 - 底物复合物。本文报道了7种突变[Y208T、Y208S、Y208A、Y208F、S211G、S211A、Y208T/S211G]对TIM催化磷酸二羟丙酮和d - 甘油醛 - 3 - 磷酸这两种完整底物反应的动力学参数[(k(cat)/K(m))(GAP)和(k(cat)/K(m))DHAP]以及底物片段乙醇醛和亚磷酸二阴离子反应的动力学参数(k(cat)/K(HPi)K(GA))的影响。这些动力学参数之间的线性对数相关性(斜率为1.04±0.03)表明,TIM的大多数突变会导致完整底物和底物片段催化反应的活化能垒发生相同变化,因此这些反应的过渡态通过与蛋白质催化剂的相似相互作用而得以稳定。GAP异构化的k(cat)与亚磷酸二阴离子结合到野生型及许多突变型TIM催化底物片段反应的过渡态的K(d)(⧧)之间的第二个线性对数相关性[斜率 = 0.53±0.16]表明,这些突变消除的野生型TIM二阴离子结合能中约50%在野生型米氏复合物中表达,约50%仅在野生型过渡态表达。当突变导致催化位点的酶反应性降低时,会观察到与该相关性的负偏差。Y208T、Y208S和Y208A突变的主要作用是导致总内在二阴离子结合能降低,但Y208F的影响延伸到了催化位点。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8f12/4694050/d97547f85b02/ja-2015-09328h_0009.jpg

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