论文标题
抗SARS-COV-2乳铁蛋白的分子机制
Molecular mechanisms behind anti SARS-CoV-2 action of lactoferrin
论文作者
论文摘要
尽管为遏制感染做出了巨大的努力,但新型的SARS-COV-2冠状病毒已迅速成为大流行病,这主要是由于其极高的人类到人类传播能力以及令人惊讶的无症状人群病毒率。尽管仍在寻求疫苗,但抗病毒化合物已经获得了有希望的结果。特别是,发现乳铁蛋白在预防和舒缓感染方面具有有益的作用。在这里,我们探讨了乳铁蛋白会干扰SARS-COV-2细胞侵袭的可能的分子机制,从而防止病毒的附着和/或进入。为此,我们寻找可能与病毒结构蛋白和宿主受体的可能相互作用。代表蛋白质的分子ISO电子表面,用2D-zernike的描述符,我们(i)在乳铁蛋白表面上鉴定出可以在宿主细胞膜上结合唾液酸受体的推定区域,从而掩盖了细胞的细胞。 (ii)表明,在乳铁蛋白和ACE2受体之间没有显着形状的互补性,而(iii)在SARS-COV-2峰值蛋白的N和C末端结构域中发现了两个高互补区域,暗示与乳杆菌和ACE2之间的可能竞争有关,以与Spike蛋白结合。
Despite the huge effort to contain the infection, the novel SARS-CoV-2 coronavirus has rapidly become pandemics, mainly due to its extremely high human-to-human transmission capability, and a surprisingly high viral charge of symptom-less people. While the seek of a vaccine is still ongoing, promising results have been obtained with antiviral compounds. In particular, lactoferrin is found to have beneficial effects both in preventing and soothing the infection. Here, we explore the possible molecular mechanisms with which lactoferrin interferes with SARS-CoV-2 cell invasion, preventing attachment and/or entry of the virus. To this aim, we search for possible interactions lactoferrin may have with virus structural proteins and host receptors. Representing the molecular iso-electron surface of proteins in terms of 2D-Zernike descriptors, we (i) identified putative regions on the lactoferrin surface able to bind sialic acid receptors on the host cell membrane, sheltering the cell from the virus attachment; (ii) showed that no significant shape complementarity is present between lactoferrin and the ACE2 receptor, while (iii) two high complementarity regions are found on the N- and C-terminal domains of the SARS-CoV-2 spike protein, hinting at a possible competition between lactoferrin and ACE2 for the binding to the spike protein.