Umeyama H, Hirono S, Nakagawa S
Proc Natl Acad Sci U S A. 1984 Oct;81(20):6266-70. doi: 10.1073/pnas.81.20.6266.
Ab initio molecular orbital studies have been made as a model for the deacylation step of trypsin. Ser-195 is modeled by H2O in which one H is replaced either by--PO2(OH)- (monoisopropyl phosphoryl, MIP) or by--CHO(OH)- (a transition state analogue, TSD). The quantum mechanical region includes imidazole+ and acetate- as models for His-57+ and Asp-102-, two hydrogen bonds from two formamide molecules to the oxyanion MIP or TSD, and three hydrogen bonds to Asp-102. The remainder of the enzyme is treated classically as a fractional charge model. The effect of proton transfer from His-57+ to Asp-102- is very similar for the MIP and TSD models, and the proton transfer is energetically unfavorable for all models that include at least the hydrogen bond from an H2O that models Ser-214. Thus, the several hydrogen bonds to the models of the catalytic unit (substrate, Ser-195, His-57, and Asp-102) stabilize the His-57+/Asp-102- salt link, and this indicates that proton transfer does not occur from His-57+ to Asp-102-. (Also, the similarities of energy of transfer of this proton transfer for the various models show that the model substrate analogue behaves very similarly to the MIP inhibitor.)
已开展从头算分子轨道研究,作为胰蛋白酶脱酰基步骤的模型。丝氨酸 - 195 由 H₂O 模拟,其中一个 H 被 -PO₂(OH)-(单异丙基磷酰基,MIP)或 -CHO(OH)-(过渡态类似物,TSD)取代。量子力学区域包括咪唑⁺和乙酸根⁻,分别作为组氨酸 - 57⁺和天冬氨酸 - 102⁻的模型,两个甲酰胺分子与氧阴离子 MIP 或 TSD 形成两个氢键,以及与天冬氨酸 - 102 形成三个氢键。酶的其余部分按经典的分数电荷模型处理。对于 MIP 和 TSD 模型,从组氨酸 - 57⁺向天冬氨酸 - 102⁻的质子转移效应非常相似,并且对于所有至少包括来自模拟丝氨酸 - 214 的 H₂O 的氢键的模型,质子转移在能量上是不利的。因此,与催化单元模型(底物、丝氨酸 - 195、组氨酸 - 57 和天冬氨酸 - 102)形成的几个氢键稳定了组氨酸 - 57⁺/天冬氨酸 - 102⁻盐键,这表明质子不会从组氨酸 - 57⁺向天冬氨酸 - 102⁻转移。(此外,各种模型中这种质子转移的转移能量相似性表明,模型底物类似物的行为与 MIP 抑制剂非常相似。)