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首页> 外文期刊>RSC Advances >Understanding the role of galectin inhibitors as potential candidates for SARS-CoV-2 spike protein: in silico studies
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Understanding the role of galectin inhibitors as potential candidates for SARS-CoV-2 spike protein: in silico studies

机译:了解Galectin抑制剂作为SARS-COV-2穗蛋白的潜在候选者的作用:在Silico研究中

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摘要

The Severe Acute Respiratory Syndrome Corona Virus 2 (SARS-CoV-2) has been rapidly transmitting and leaving its footprints across the globe. Stringent measures like complete lockdown and extensive testing have been employed by many countries to slow it down in its tracks until a viable treatment is found. Therefore, in the current scenario, prompt solutions need to be uncovered to tackle the virus. In the present study, 330 galectin inhibitors were tested against SARS-CoV-2 spike (S) protein with the aid of molecular docking and molecular dynamics. Finally, the binding free energy and contributing energies were calculated for 2 top scoring ligands by using MM–GBSA method. Many of the galectin inhibitors displayed high binding score against the S protein. They were found to bind to the site of contact of S protein to ACE2. Thus, they show promise of disrupting the ACE2–S protein binding and prevent the virus from invading the host cell. Among the ligands screened, TD-139, a molecule currently in Phase IIb clinical trials, was found to be a potential hit. The present study paves the way for in vitro and in vivo testing of galectin inhibitors against SARS-CoV-2. In addition, it warrants a swift examination of TD-139 for treating COVID-19.
机译:严重的急性呼吸综合征Corona病毒2(SARS-COV-2)一直在迅速传播和留下其全球的占地面积。许多国家雇用了完全锁定和大量测试的严格措施,使其在其轨道上放慢速度,直到找到可行的治疗。因此,在当前的场景中,需要揭示提示解决方案以解决病毒。在本研究中,借助于分子对接和分子动力学对330个Galectin抑制剂针对SARS-COV-2穗蛋白进行测试。最后,通过使用MM-GBSA方法计算2个顶部评分配体的结合自由能和贡献能量。许多半联蛋白抑制剂针对S蛋白质显示出高结合分数。发现它们与S蛋白的接触部位与ACE2结合。因此,它们表明承诺破坏ACE2-S蛋白结合并防止病毒入侵宿主细胞。在筛选的配体中,发现目前在IIB期临床试验中的分子是潜在的击中。本研究铺平了体外和体内测试的途径,对SARS-COV-2的Galectin抑制剂进行了体内测试。此外,它还保证对治疗Covid-19的TD-139的迅速检查。

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