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首页> 外文期刊>Biochemistry >Mechanism of the Orotidine 5'-Monophosphate Decarboxylase-Catalyzed Reaction: Importance of Residues in the Orotate Binding Site
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Mechanism of the Orotidine 5'-Monophosphate Decarboxylase-Catalyzed Reaction: Importance of Residues in the Orotate Binding Site

机译:Orotidine 5'-单磷酸脱羧酶催化反应的机制:残基在Orotate结合位点的重要性。

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摘要

The reaction catalyzed by orotidine 5'-monophosphate decarboxylase (OMPDC) is accompanied by exceptional values for rate enhancement (k_(cat)/ k_(non) = 7.1 × 10~(16)) and catalytic proficiency [(k_(cat)/K_M)/k_(non = 4.8 × 10~(22) M~(-)1]. Although a stabilized vinyl carbanion/carbene intermediate is located on the reaction coordinate, the structural strategies by which the reduction in the activation energy barrier is realized remain incompletely understood. This laboratory recently reported that "substrate destabilization" by Asp 70 in the OMPDC from Methanothermobacter thermoautotrophicus (MtOMPDC) lowers the activation energy barrier by ~S kcal/mol (contributing ~2.7 × 10~3 to the rate enhancement) [Chan, K. K., Wood, B. M., Fedorov, A. A., Fedorov, E. V., linker, H. J., Amyes, T. L., Richard, J. P., Almo, S. C., and Gerlt, J. A. (2009) Biochemistry 48, 5518-5531]. We now report that substitutions of hydrophobic residues in a pocket proximal to the carboxylate group of the substrate (Ile 96, Leu 123, and Val 155) with neutral hydrophilic residues decrease the value of lc, by as much as 400-fold but have a minimal effect on the value of k?,, for exchange of H6 of the FUMP product analogue with solvent deuterium; we hypothesize that this pocket destabilizes the substrate by preventing hydration of the substrate carboxylate group. We also report that substitutions of Ser 127 that is proximal to 04 of the orotate ring decrease the value of K_(cat)/K_M, with the S127P substitution that eliminates hydrogen bonding interactions with 04 producing a 2.5 × 10~6-fold reduction; this effect is consistent with delocalization of the negative charge of the carbanionic intermediate on O4 that produces an anionic carbene intermediate and thereby provides a structural strategy for stabilization of the intermediate. These observations provide additional information about the identities of the active site residues that contribute to the rate enhancement and, therefore, insights into the structural strategies for catalysis.
机译:牛尿苷5'-单磷酸脱羧酶(OMPDC)催化的反应伴随有速率提高(k_(cat)/ k_(non)= 7.1×10〜(16))和催化能力[[k_(cat)/ K_M)/ k_(non = 4.8×10〜(22)M〜(-)1]。尽管稳定的乙烯基碳负离子/卡宾中间体位于反应坐标上,但降低活化能垒的结构策略是该实验室最近报告说,Asp 70在热自养甲烷甲烷杆菌(MtOMPDC)的OMPDC中“底物失稳”将激活能垒降低了〜S kcal / mol(对速率提高贡献约2.7×10〜3)。 [Chan,KK,Wood,BM,Fedorov,AA,Fedorov,EV,linker,HJ,Amyes,TL,Richard,JP,Almo,SC,and Gerlt,JA(2009)Biochemistry 48,5518-5531]。报告说,取代基的羧基附近的口袋中的疏水残基被取代带有中性亲水性残基的te(Ile 96,Leu 123和Val 155)可将lc值降低多达400倍,但对kα值的影响最小,以交换FUMP产品中的H6与溶剂氘类似物;我们假设该袋通过防止底物羧酸盐基团的水合而使底物不稳定。我们还报告说,靠近乳清酸盐环04的Ser 127取代降低了K_(cat)/ K_M的值,而S127P取代消除了与04的氢键相互作用,产生2.5×10〜6倍的减少;该作用与碳负离子中间体在O4上的负电荷的离域作用相一致,后者产生了阴离子卡宾中间体,从而为中间体的稳定化提供了结构策略。这些观察结果提供了有关有助于提高速率的活性位点残基身份的其他信息,因此,提供了有关催化结构策略的见识。

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