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首页> 外文期刊>BMC Cell Biology >Identification of a druggable binding pocket in the spike protein reveals a key site for existing drugs potentially capable of combating Covid-19 infectivity
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Identification of a druggable binding pocket in the spike protein reveals a key site for existing drugs potentially capable of combating Covid-19 infectivity

机译:钉蛋白中的可药剂结合口袋的鉴定显示出可能能够打击Covid-19感染性的现有药物的关键部位

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Following the recent outbreak of the new coronavirus pandemic (Covid-19), the rapid determination of the structure of the homo-trimeric spike glycoprotein has prompted the study reported here. The aims were to identify potential “druggable” binding pockets in the protein and, if located, to virtual screen pharmaceutical agents currently in use for predicted affinity to these pockets which might be useful to restrict, reduce, or inhibit the infectivity of the virion. Our analyses of this structure have revealed a key potentially druggable pocket where it might be viable to bind pharmaceutical agents to inhibit its ability to infect human cells. This pocket is found at the inter-chain interface that exists between two domains prior to the virion binding to human Angiotensin Converting Enzyme 2 (ACE2) protein. One of these domains is the highly mobile receptor binding domain, which must move into position to interact with ACE2, which is an essential feature for viral entry to the host cell. Virtual screening with a library of purchasable drug molecules has identified pharmaceuticals currently in use as prescription and over the counter medications that, in silico, readily bind into this pocket. This study highlights possible drugs already in use as pharmaceuticals that may act as agents to interfere with the movements of the domains within this protein essential for the infectivity processes and hence might slow, or even halt, the infection of host cells by this new coronavirus. As these are existing pharmaceuticals already approved for use in humans, this knowledge could accelerate their roll-out, through repurposing, for affected individuals and help guide the efforts of other researchers in finding effective treatments for the disease.
机译:在最近爆发新的冠状病毒大流行(Covid-19)之后,均 - 三聚体穗糖蛋白结构的快速测定促使研究报告。目的是鉴定蛋白质中的潜在的“可用于可用的”粘合袋,并且如果定位,对于目前用于预测这些袋的虚拟筛选药剂,这对于这些口袋可能有用于限制,减少或抑制病毒群岛感染性的袋。我们对这种结构的分析揭示了一种关键潜在的可耐药袋,在那里它可能是可行的,用于结合药物以抑制其感染人细胞的能力。该口袋在链间界面中发现,在病毒素前与人血管紧张素转化酶2(ACE2)蛋白质结合之前的两个域之间存在。这些域之一是高度移动受体结合结构域,其必须进入位置以与ACE2相互作用,这是宿主细胞的病毒进入的基本特征。使用可购买药物分子库的虚拟筛选已鉴定目前用作处方药的药物和在硅藻中的处方药中,容易粘合到这个口袋里。本研究突出了已经用作药物作为药物的药物,该药物可以充当药物以干扰该蛋白质中的域内的域的运动,因此可能会缓慢,甚至停止这种新的冠状病毒感染宿主细胞。由于这些都是已经批准用于人类的药物,这知识可以通过重新估算来加速他们的推出,因为影响受影响的人,并帮助指导其他研究人员在寻找疾病的有效治疗方面的努力。

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