首页> 外文期刊>Journal of the American Chemical Society >Molecular Structures and Dynamics of the Stepwise Activation Mechanism of a Matrix Metalloproteinase Zymogen: Challenging the Cysteine Switch Dogma
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Molecular Structures and Dynamics of the Stepwise Activation Mechanism of a Matrix Metalloproteinase Zymogen: Challenging the Cysteine Switch Dogma

机译:基质金属蛋白酶酶原的逐步激活机制的分子结构和动力学:挑战半胱氨酸开关教条。

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Activation of matrix metalloproteinase zymogen (pro-MMP) is a vital homeostatic process, yet its molecular basis remains unresolved. Using stopped-flow X-ray spectroscopy of the active site zinc ion, we determined the temporal sequence of pro-MMP-9 activation catalyzed by tissue kallikrein protease in milliseconds to several minutes. The identity of three intermediates seen by X-ray spectroscopy was corroborated by molecular dynamics simulations and quantum mechanics/molecular mechanics calculations. The cysteine-zinc interaction that maintains enzyme latency is disrupted via active-site proton transfers that mediate transient metal-protein coordination events and eventual binding of water. Unexpectedly, these events ensue as a direct result of complexation of pro-MMP-9 and kallikrein and occur before proteolysis and eventual dissociation of the pro-peptide from the catalytic site. Here we demonstrate the synergism among long-range protein conformational transitions, local structural rearrangements, and fine atomic events in the process of zymogen activation.
机译:基质金属蛋白酶酶原(pro-MMP)的激活是至关重要的体内平衡过程,但其分子基础仍未解决。使用活性位点锌离子的停止流X射线光谱法,我们确定了由组织激肽释放酶蛋白酶催化的MMP-9促MMP-9活化的时间序列,时间为毫秒至几分钟。通过分子动力学模拟和量子力学/分子力学计算,证实了通过X射线光谱法观察到的三种中间体的身份。维持酶潜伏期的半胱氨酸与锌的相互作用通过介导瞬时金属-蛋白质配位事件和最终与水结合的活性部位质子转移而中断。出乎意料的是,这些事件是由于原MMP-9和激肽释放酶复合的直接结果,并发生在蛋白水解和原肽从催化位点解离之前。在这里,我们证明了远程蛋白构象转变,局部结构重排和酶原激活过程中的精细原子事件之间的协同作用。

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