A.N. Bach Institute of Biochemistry of the Russian Academy of Science, Leninsky Prospect, 33, Moscow 119071, Russian Federation.
J Phys Chem B. 2014 Nov 26;118(47):13505-12. doi: 10.1021/jp5088702. Epub 2014 Nov 14.
Discovering ways to control the activity of matrix metalloproteinases (MMPs), zinc-dependent enzymes capable of degrading extracellular matrix proteins, is an important field of cancer research. We report here a novel strategy for assembling MMP inhibitors on the basis of oligopeptide ligands by exploring the pattern known as the zinc finger motif. Advanced molecular modeling tools were used to characterize the structural binding motifs of experimentally tested MMP inhibitors, as well as those of newly proposed peptidomimetics, in their zinc-containing active sites. The results of simulations based on the quantum mechanics/molecular mechanics (QM/MM) approach and Car-Parrinello molecular dynamics with QM/MM potentials demonstrate that, upon binding of Regasepin1, a known MMP-9 inhibitor, the Zn(2+)(His3) structural element is rearranged to the Zn(2+)(Cys2His2) zinc finger motif, in which two Cys residues are borrowed from the ligand. Following consideration of the crystal structure of MMP-2 with its inhibitor, the oligopeptide APP-IP, we proposed a new peptidomimetic with two replacements in the substrate, Tyr3Cys and Asp6Cys. Simulations show that this peptide variant blocks an enzyme active site by the Zn(2+)(Cys2His2) zinc finger construct. Similarly, a natural substrate of MMP-2, Ace-Gln-Gly ∼ Ile-Ala-Gly-Nme, can be converted to an inhibiting compound by two replacements, Ile by Cys and Gly by the d isomer of Cys, favoring formation of the zinc finger motif.
发现控制基质金属蛋白酶(MMPs)活性的方法是癌症研究的一个重要领域。MMPs 是一种锌依赖性酶,能够降解细胞外基质蛋白。我们在此报告了一种基于寡肽配体组装 MMP 抑制剂的新策略,该策略通过探索锌指模体的模式来实现。先进的分子建模工具用于描述实验测试的 MMP 抑制剂的结构结合基序,以及新提出的拟肽的结构结合基序,这些抑制剂和拟肽都存在于其含锌的活性部位中。基于量子力学/分子力学(QM/MM)方法和带 QM/MM 势能的 Car-Parrinello 分子动力学的模拟结果表明,在已知的 MMP-9 抑制剂 Regasepin1 结合后,Zn(2+)(His3)结构元素被重排为锌指模体 Zn(2+)(Cys2His2),其中两个 Cys 残基来自配体。在考虑了含有抑制剂的 MMP-2 的晶体结构之后,我们提出了一种新的拟肽,在底物中进行了两个替换,Tyr3Cys 和 Asp6Cys。模拟表明,这种肽变体通过 Zn(2+)(Cys2His2)锌指结构阻塞了酶的活性部位。同样,MMP-2 的天然底物 Ace-Gln-Gly ∼ Ile-Ala-Gly-Nme 可以通过两个替换转化为抑制化合物,即 Ile 替换为 Cys,Gly 替换为 Cys 的 d 异构体,有利于锌指模体的形成。