Supervised molecular dynamics for exploring the druggability of the SARS-CoV-2 spike protein

被引:0
作者
Giuseppe Deganutti
Filippo Prischi
Christopher A. Reynolds
机构
[1] Coventry University,Centre for Sport, Exercise and Life Sciences
[2] University of Essex,School of Life Sciences
来源
Journal of Computer-Aided Molecular Design | 2021年 / 35卷
关键词
SARS-CoV-2; COVID-19; Drug repurposing; Spike protein; Molecular dynamics; Supervised molecular dynamics;
D O I
暂无
中图分类号
学科分类号
摘要
The recent outbreak of the respiratory syndrome-related coronavirus (SARS-CoV-2) is stimulating an unprecedented scientific campaign to alleviate the burden of the coronavirus disease (COVID-19). One line of research has focused on targeting SARS-CoV-2 proteins fundamental for its replication by repurposing drugs approved for other diseases. The first interaction between the virus and the host cell is mediated by the spike protein on the virus surface and the human angiotensin-converting enzyme (ACE2). Small molecules able to bind the receptor-binding domain (RBD) of the spike protein and disrupt the binding to ACE2 would offer an important tool for slowing, or even preventing, the infection. Here, we screened 2421 approved small molecules in silico and validated the docking outcomes through extensive molecular dynamics simulations. Out of six drugs characterized as putative RBD binders, the cephalosporin antibiotic cefsulodin was further assessed for its effect on the binding between the RBD and ACE2, suggesting that it is important to consider the dynamic formation of the heterodimer between RBD and ACE2 when judging any potential candidate.
引用
收藏
页码:195 / 207
页数:12
相关论文
共 576 条
[1]  
Xydakis MS(2020)Smell and taste dysfunction in patients with COVID-19 Lancet Infect Dis 20 1015-1016
[2]  
Dehgani-Mobaraki P(2020)Clinical features of patients infected with 2019 novel coronavirus in Wuhan, China Lancet 395 497-506
[3]  
Holbrook EH(2020)The epidemiology and pathogenesis of coronavirus disease (COVID-19) outbreak J Autoimmun 109 102433-447
[4]  
Geisthoff UW(2020)Updated understanding of the outbreak of 2019 novel coronavirus (2019-nCoV) in Wuhan, China J Med Virol 92 441-261
[5]  
Bauer C(2016)Structure, function, and evolution of coronavirus spike proteins Annu Rev Virol 3 237-23
[6]  
Hautefort C(2015)Coronaviruses: an overview of their replication and pathogenesis Methods Mol Biol 1282 1-371
[7]  
Herman P(1982)Monoclonal antibodies to murine hepatitis virus-4 (strain JHM) define the viral glycoprotein responsible for attachment and cell–cell fusion Virology 119 358-1549
[8]  
Manley GT(2020)Review of the clinical characteristics of Coronavirus disease 2019 (COVID-19) J Gen Intern Med 35 1545-301
[9]  
Lyon DM(1990)Deduced sequence of the bovine coronavirus spike protein and identification of the internal proteolytic cleavage site Virology 176 296-784.e5
[10]  
Hopkins C(2020)A multibasic cleavage site in the spike protein of SARS-CoV-2 is essential for infection of human lung cells Mol Cell 78 779-292.e6