Division of Physical Chemistry, Ruđer Bošković Institute, Bijenička 54, 10 000 Zagreb, Croatia.
J Chem Inf Model. 2012 Jun 25;52(6):1583-94. doi: 10.1021/ci300141k. Epub 2012 Jun 13.
Human dipeptidyl peptidase III (DPP III) is a two domain metallo-peptidase from the M49 family. The wide interdomain cleft and broad substrate specificity suggest that this enzyme could experience significant conformational change. Long (>100 ns) molecular dynamics (MD) simulations of DPP III revealed large range conformational changes of the protein, suggesting the pre-existing equilibrium model for a substrate binding. The binding free energy calculations revealed tighter binding of the preferred synthetic substrate Arg-Arg-2-naphtylamide to the "closed" than to the "open" DPP III conformation. Our assumption that Asp372 plays a crucial role in the large scale interdomain closure was proved by the MD simulations of the Asp372Ala variant. During the same simulation time, the variant remained more "open" than the wild type protein. Apparently, Ala was not as efficient as Asp in establishing the interdomain interactions. According to the MM-PBSA calculations, the electrostatic component of the free energy of solvation turned out to be higher for the "closed" protein than for its less compact form. However, the gain in entropy due to water released from the interdomain cleft nicely balanced this negative effect.
人二肽基肽酶 III(DPP III)是一种来自 M49 家族的双结构域金属肽酶。广泛的结构域间裂隙和广泛的底物特异性表明,这种酶可能会经历显著的构象变化。DPP III 的长 (>100 ns) 分子动力学 (MD) 模拟揭示了蛋白质的大范围构象变化,表明存在预先存在的底物结合平衡模型。结合自由能计算表明,优选的合成底物 Arg-Arg-2-萘酰胺与“闭合”型 DPP III 构象的结合比与“开放”型 DPP III 构象的结合更紧密。我们假设 Asp372 在结构域间的大范围闭合中起着关键作用,这一假设通过 Asp372Ala 变体的 MD 模拟得到了证明。在相同的模拟时间内,变体比野生型蛋白更“开放”。显然,Ala 在建立结构域间相互作用方面不如 Asp 有效。根据 MM-PBSA 计算,溶剂化自由能的静电分量对于“闭合”型蛋白质比其更紧凑的形式更高。然而,由于从结构域间裂隙释放的水而导致的熵的增加很好地平衡了这种负面影响。