Maroli Nikhil
Centre for Computational Modeling, Chennai Institute of Technology, Chennai, Tamil Nadu 600069, India.
J Phys Chem B. 2023 Oct 12;127(40):8525-8536. doi: 10.1021/acs.jpcb.3c04366. Epub 2023 Sep 28.
The binding affinity between angiotensin-converting enzyme 2 (ACE2) and the receptor-binding domain (RBD) plays a crucial role in the transmission and reinfection of SARS-CoV2. Here, microsecond molecular dynamics simulations revealed that point mutations in the RBD domain induced conformational transitions that determined the binding affinity between ACE2 and RBD. These structural changes propagated through the RBD domain, altering the orientation of both ACE2 and RBD residues at the binding site. ACE2 receptor shows significant structural heterogeneity, whereas its binding to the RBD domain indicates a much greater degree of structural homogeneity. The receptor was more flexible in its unbound state with the binding of RBD domains inducing structural transitions. The structural heterogeneity observed in the ACE2 unbound form plays a role in the promiscuity of viral entry, as it may allow the receptor to interact with various related and unrelated ligands. Furthermore, rigidity may be important for stabilizing the complex and ensuring the proper orientation of the RBD-binding interface with ACE2. The greater structural homogeneity observed in the ACE2-RBD complex revealed the effectiveness of neutralizing antibodies and vaccines that are primarily directed toward the RBD-binding interface. The binding of the B38 monoclonal antibody revealed restricted conformational transitions in the RBD and ACE2 receptors, attributed to its potent binding interaction.
血管紧张素转换酶2(ACE2)与受体结合域(RBD)之间的结合亲和力在严重急性呼吸综合征冠状病毒2(SARS-CoV2)的传播和再感染中起着关键作用。在此,微秒级分子动力学模拟显示,RBD结构域中的点突变诱导了构象转变,从而决定了ACE2与RBD之间的结合亲和力。这些结构变化通过RBD结构域传播,改变了结合位点处ACE2和RBD残基的取向。ACE2受体表现出显著的结构异质性,而其与RBD结构域的结合则显示出更高程度的结构同质性。该受体在未结合状态下更具灵活性,RBD结构域的结合会诱导结构转变。在ACE2未结合形式中观察到的结构异质性在病毒进入的混杂性中起作用,因为它可能使受体与各种相关和不相关的配体相互作用。此外,刚性对于稳定复合物以及确保RBD与ACE2结合界面的正确取向可能很重要。在ACE2-RBD复合物中观察到的更高程度的结构同质性揭示了主要针对RBD结合界面的中和抗体和疫苗的有效性。B38单克隆抗体的结合显示出RBD和ACE2受体中受限的构象转变,这归因于其强大的结合相互作用。