Mladenovic Milena, Fink Reinhold F, Thiel Walter, Schirmeister Tanja, Engels Bernd
Institut für Organische Chemie, Universität Würzburg, Am Hubland, D-97074 Würzburg, Germany.
J Am Chem Soc. 2008 Jul 9;130(27):8696-705. doi: 10.1021/ja711043x. Epub 2008 Jun 17.
Papain-like cysteine proteases are ubiquitous proteolytic enzymes. The protonated His199/deprotonated Cys29 ion pair (cathepsin B numbering) in the active site is essential for their proper functioning. The presence of this ion pair stands in contrast to the corresponding intrinsic residue p K a values, indicating a strong influence of the enzyme environment. In the present work we show by molecular dynamics simulations on quantum mechanical/molecular mechanical (QM/MM) potentials that the ion pair is stabilized by a complex hydrogen bond network which comprises several amino acids situated in the active site of the enzyme and 2-4 water molecules. QM/MM reaction path computations for the proton transfer from His199 to the thiolate of the Cys29 moiety indicate that the ion pair is about 32-36 kJ mol (-1) more stable than the neutral form if the whole hydrogen bonding network is active. Without any hydrogen bonding network the ion pair is predicted to be significantly less stable than the neutral form. QM/MM charge deletion analysis and QM model calculations are used to quantify the stabilizing effect of the active-site residues and the L1 helix in favor of the zwitterionic form. The active-site water molecules contribute about 30 kJ mol (-1) to the overall stabilization. Disruption of the hydrogen bonding network upon substrate binding is expected to enhance the nucleophilic reactivity of the thiolate.
木瓜蛋白酶样半胱氨酸蛋白酶是普遍存在的蛋白水解酶。活性位点中的质子化His199/去质子化Cys29离子对(组织蛋白酶B编号)对其正常功能至关重要。该离子对的存在与相应的内在残基pKa值形成对比,表明酶环境有强烈影响。在本工作中,我们通过对量子力学/分子力学(QM/MM)势进行分子动力学模拟表明,该离子对由一个复杂的氢键网络稳定,该网络包含位于酶活性位点的几个氨基酸和2 - 4个水分子。从His199到Cys29部分硫醇盐的质子转移的QM/MM反应路径计算表明,如果整个氢键网络活跃,该离子对比中性形式稳定约32 - 36 kJ mol(-1)。没有任何氢键网络时,预计该离子对比中性形式稳定性显著更低。QM/MM电荷删除分析和QM模型计算用于量化活性位点残基和L1螺旋对两性离子形式的稳定作用。活性位点水分子对整体稳定性贡献约30 kJ mol(-1)。预计底物结合时氢键网络的破坏会增强硫醇盐的亲核反应性。