Department HPC, CINECA, via dei Tizii 6, 00185 Roma, Italy.
Department HPC, CINECA, via Magnanelli 6/3, 40033 Casalecchio di Reno (BO), Italy.
Int J Mol Sci. 2020 Jul 28;21(15):5346. doi: 10.3390/ijms21155346.
Given the enormous social and health impact of the pandemic triggered by severe acute respiratory syndrome 2 (SARS-CoV-2), the scientific community made a huge effort to provide an immediate response to the challenges posed by Coronavirus disease 2019 (COVID-19). One of the most important proteins of the virus is an enzyme, called 3CLpro or main protease, already identified as an important pharmacological target also in SARS and Middle East respiratory syndrome virus (MERS) viruses. This protein triggers the production of a whole series of enzymes necessary for the virus to carry out its replicating and infectious activities. Therefore, it is crucial to gain a deeper understanding of 3CLpro structure and function in order to effectively target this enzyme. All-atoms molecular dynamics (MD) simulations were performed to examine the different conformational behaviors of the monomeric and dimeric form of SARS-CoV-2 3CLpro apo structure, as revealed by microsecond time scale MD simulations. Our results also shed light on the conformational dynamics of the loop regions at the entry of the catalytic site. Studying, at atomic level, the characteristics of the active site and obtaining information on how the protein can interact with its substrates will allow the design of molecules able to block the enzymatic function crucial for the virus.
鉴于由严重急性呼吸系统综合征 2 型病毒(SARS-CoV-2)引发的大流行病对社会和健康造成的巨大影响,科学界为应对 2019 年冠状病毒病(COVID-19)带来的挑战做出了巨大努力。病毒的一种最重要的蛋白是一种酶,称为 3CLpro 或主蛋白酶,在 SARS 和中东呼吸综合征病毒(MERS)病毒中也已被确定为一个重要的药理学靶标。这种蛋白触发了一系列酶的产生,病毒需要这些酶来进行复制和感染活动。因此,深入了解 3CLpro 的结构和功能对于有效地靶向这种酶至关重要。采用全原子分子动力学(MD)模拟方法,对微秒时间尺度 MD 模拟揭示的单体和二聚体形式的 SARS-CoV-2 3CLpro 无配体结构的不同构象行为进行了研究。我们的研究结果还阐明了催化部位入口处环区的构象动力学。在原子水平上研究活性部位的特征,并获取有关蛋白质如何与其底物相互作用的信息,将有助于设计能够阻断对病毒至关重要的酶功能的分子。