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首页> 外文期刊>Journal of the American Chemical Society >PROBING THE ACTIVE SITE OF ACETYLCHOLINESTERASE BY MOLECULAR DYNAMICS OF ITS PHOSPHONATE ESTER ADDUCTS
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PROBING THE ACTIVE SITE OF ACETYLCHOLINESTERASE BY MOLECULAR DYNAMICS OF ITS PHOSPHONATE ESTER ADDUCTS

机译:通过其磷酸酯类添加剂的分子动力学研究乙酰胆碱酯酶的活性位点

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Molecular dynamics (MD) simulations using CHARMM were performed for the solution structures of the pentacoordinate and tetracoordinate PSCS and PRCS adducts of Torpedo californica (Tc) acetylcholinesterase (AChE) formed with 2-(3,3-dimethylbutyl) methylphosphonofluoridate (soman) to assess the molecular origins of stereoselectivity of phosphonylation. MD simulations were also carried out for the PSCS transients in soman-inhibited trypsin to evaluate the differences in the mode of operation of the two enzymes. Parameters for the pentacoordinate phosphonate fragments were constructed from results of an nb initio calculation at the 6-31G* level for a model compound, and those for the tetracoordinate phosphonate fragments were from MNDO calculations. Starting equilibrium structures for the above and for analogous structures for chymotrypsin were generated and energy-optimized in program YETI. The stereoselectivity of AChE for the levorotatory diastereomers of soman amounts to >5.6 kcal/mol difference in transition state free energies and can be rationalized based on the results of the MD calculations: There is a predominant conformation of transient forms of the PsCs diastereomer of soman:inhibited AChE in which every ligand in phosphorus is stabilized by an optimal binding feature of the active site. In contrast, the phosphonyl fragment in the PRCS diastereomer may be accommodated with equal difficulty, at least, two different ways: In the most favorable conformation, the phosphoryl oxygen is engaged in weak interactions with constituents of the oxyanion hole if adjustments in the Ca backbone and substantial motions of Trp84, Trp233, Phe288, and Phe290 are allowed. The remarkable efficiency of F- departure from the pentacoordinate transition states of phosphonylated AChE cannot be explained by general base catalysis by HisH(+)440. Leaving group departure from these structures must be promoted by electrostatic forces, ''push'' from Glu199 and ''pull'' from the oxyanion hole, in addition to steric strain. One of the distinguishing features of the crystal structure of TcAChE is the short H-bonds in the catalytic triad. The His440 N delta---OOC beta Asp327 bond distance is 2.5 W (2.8 Angstrom resolution) in AChE and 0.2 Angstrom shorter than the corresponding H-bond in trypsin and chymotrypsin (1.5 Angstrom resolution). This distance increased to 2.7 Angstrom during the dynamics simulation. However, the average H-bond distances are further shortened by 0.05-0.3 Angstrom in energy-minimized structures of the adducts of AChE covalently modified by soman at the pentacoordinate and tetracoordinate intermediate stage. MD simulations of the optimized structures of native AChE and its adducts gave insight into how the skeletal motions accommodate an overcrowded active site particularly in the pentacoordinate adducts. The steric relief is only partial and is balanced by a repositioning of Glu199 toward the catalytic triad and phosphonyl fragment. This subtle reorientation of active-site residues should be relevant to the prominent catalytic efficiency of AChE.
机译:使用CHARMM分子动力学模拟了由2-(3,3-二甲基丁基)甲基膦酸氟酯(soman)形成的加州鱼雷(Tc)乙酰胆碱酯酶(AChE)的五配位和四配位PSCS和PRCS加合物的溶液结构,以评估膦酰化的立体选择性的分子起源。还对人抑制胰蛋白酶的PSCS瞬变进行了MD模拟,以评估两种酶的作用方式的差异。五配位膦酸酯片段的参数是根据模型化合物在6-31G *浓度下的nb起始计算结果构建的,四配位膦酸酯片段的参数则来自MNDO计算。在程序YETI中生成了上述和胰凝乳蛋白酶类似结构的起始平衡结构,并对其进行了能量优化。 AChE对梭曼左旋非对映异构体的立体选择性大于5.6 kcal / mol过渡态自由能之差,可以根据MD计算的结果合理化:梭曼PsCs非对映异构体的过渡形式主要是构象:AChE抑制,其中磷中的每个配体均通过活性位点的最佳结合特征而稳定。相比之下,PRCS非对映异构体中的膦酰基片段可能具有相同的困难,至少有两种不同的方式:在最有利的构型中,如果在Ca主链上进行调节,则磷氧与氧阴离子孔的组分之间的相互作用较弱。并且允许Trp84,Trp233,Phe288和Phe290的大量运动。 F-脱离膦酰基化AChE的五配位过渡态的显着效率无法通过HisH(+)440的一般碱催化来解释。除空间应变外,还必须通过静电力(Glu199的“推”和氧阴离子孔的“拉”)促进离开这些结构的基团。 TcAChE晶体结构的显着特征之一是催化三联体中的短氢键。 His440 N delta --- OOC beta Asp327的键距在AChE中为2.5 W(2.8埃分辨率),比胰蛋白酶和胰凝乳蛋白酶(1.5埃分辨率)中的相应H键短0.2埃。在动力学仿真过程中,该距离增加到2.7埃。然而,在五坐标和四坐标中间阶段,由梭曼共价修饰的AChE加合物的能量最小化结构中,平均氢键距离进一步缩短了0.05-0.3埃。 MD对天然AChE及其加合物的优化结构的MD模拟使人们深入了解了骨骼运动如何容纳人满为患的活性部位,特别是在五坐标加合物中。空间释放仅是部分的,并且通过将Glu199朝向催化三联体和膦酰基片段的重新定位来平衡。活性位残基的这种微妙的重新取向应与AChE的显着催化效率有关。

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