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丝氨酸水解酶的膦酸酯加合物中衰老反应的起源与多样性:它们探测的活性位点有哪些特征?

Origins and diversity of the aging reaction in phosphonate adducts of serine hydrolase enzymes: what characteristics of the active site do they probe?

作者信息

Bencsura A, Enyedy I, Kovach I M

机构信息

Department of Chemistry, Catholic University of America, Washington, D.C. 20064, USA.

出版信息

Biochemistry. 1995 Jul 18;34(28):8989-99. doi: 10.1021/bi00028a007.

Abstract

Molecular mechanics and dynamics combined with semiempirical calculations were carried out for purposes of comparison of the active site characteristics of AChE, trypsin, and chymotrypsin as probed by their diastereomeric adducts with 2-(3,3-dimethylbutyl) methylphosphonofluoridate (soman), methylphosphonate monoester anions, and tetravalent carbonyl intermediates of the reactions of the natural substrates in each case. Glu199 is a key residue in the electrostatic catalytic mechanism of AChE, in removal of the leaving group, and possibly by acting as an alternate general base catalyst. "Pushing" of an alkoxy ligand by Glu199 and the numerous small van der Waals interactions promote dealkylation in phosphonate adducts of AChE much more effectively than any other enzyme. A high concentration of negative charge created by the phosphonate ester monoanion and Glu199 adjacent to it fully accounts for the resistance to the attack of even the strongest nucleophile applied for enzyme reactivation. Stabilization of the developing negative charge on the phosphonates in the soman-inhibited PSCS adducts of serine hydrolases is by electrophilic residues in the oxyanion hole (AChE) and the protonated catalytic His. PR diastereomers of soman-inhibited AChE can be accommodated in an orientation in which the oxyanion hole interactions are lost and for which the stabilizing interactions are 17-26 kcal/mol smaller than in the PS diastereomer. The dealkylation reaction is almost equally likely in all diastereomers of soman-inhibited AChE. The stabilizing interaction energies are approximately 4 kcal/mol greater in the PR than in the PS adducts of the soman-inhibited serine proteases. There is 0.60 unit greater partial negative charge on the phosphonyl fragment in the anion of phosphonate monoesters of Ser than at the oxygens of tetravalent carbonyl transients resulting in approximately 12-22 kcal/mol greater stabilization of the former than the latter.

摘要

结合半经验计算进行分子力学和动力学研究,目的是比较乙酰胆碱酯酶(AChE)、胰蛋白酶和胰凝乳蛋白酶的活性位点特征,这些特征通过它们与2-(3,3-二甲基丁基)甲基磷酰氟化物(梭曼)、甲基膦酸单酯阴离子以及每种情况下天然底物反应的四价羰基中间体的非对映体加合物来探测。Glu199是AChE静电催化机制、离去基团去除过程中的关键残基,并且可能作为替代的通用碱催化剂发挥作用。Glu199对烷氧基配体的“推动”以及众多小的范德华相互作用,比任何其他酶都更有效地促进了AChE膦酸酯加合物中的脱烷基化反应。膦酸酯单阴离子及其相邻的Glu199产生的高浓度负电荷,充分解释了即使是用于酶再活化的最强亲核试剂也难以攻击的原因。在丝氨酸水解酶的梭曼抑制的PSCS加合物中,膦酸酯上不断发展的负电荷通过氧阴离子孔(AChE)中的亲电残基和质子化的催化组氨酸得到稳定。梭曼抑制的AChE的PR非对映体可以以失去氧阴离子孔相互作用的方向容纳,并且其稳定相互作用比PS非对映体小17 - 26千卡/摩尔。在梭曼抑制的AChE的所有非对映体中,脱烷基化反应几乎同样可能发生。在梭曼抑制的丝氨酸蛋白酶的PR加合物中,稳定相互作用能比PS加合物大约高4千卡/摩尔。丝氨酸膦酸单酯阴离子中膦酰基片段上的部分负电荷比四价羰基瞬态的氧原子上的部分负电荷多0.60个单位,导致前者比后者的稳定化程度大约高12 - 22千卡/摩尔。

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