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Structural investigations, quantum mechanical studies on proton and metal affinity and biological activity predictions of selpercatinib

机译:结构研究,量子力学研究质子和金属亲和力和硒替辛的生物活性预测

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Cancer of the lungs and thyroid is particularly difficult to manage and treat Notably, selpercatinib has recently been suggested as an effective drug to combat these diseases. The entire world is currently tackling the pandemic caused by the SARS-CoV-19 virus. Numerous pharmaceuticals have been evaluated for the management of the disease caused by SARS-CoV-19 (i.e.. COVID-19). In this study, selpercatinib was proposed as a potential inhibitor of different SARS-CoV-19 proteins. Several intriguing effects of the molecule were found during the conducted computational investigations. Selpercatinib could effectively act as a proton sponge and exhibited high proton affinity in solution. Moreover, it was able to form complexes with metal ions in aqueous solutions. Specifically, the compound displayed high affinity towards zinc ions, which are important for the prevention of virus multiplication inside human cells. However, due to their charge, zinc ions are not able to pass the lipid bilayer and enter the cell. Thus, it was determined that selpercatinib could act as an ionophore, effectively transporting active zinc ions into cells. Furthermore, various quantum mechanical analyses, including energy studies, evaluation of the reactivity parameters, examination of the electron localisation and delocalisation properties, as well as assessment of the nonlinear optical (NLO) properties and information entropy, were conducted herein. The performed docking studies (docking scores -9.3169, -9.1002, -8.1853 and -8.1222 kcal mol(-1)) demonstrated that selpercatinib strongly bound with four isolated SARS-CoV-2 proteins. (C) 2020 Elsevier B.V. All rights reserved.
机译:肺癌和甲状腺癌尤其难以管理和治疗,值得注意的是,最近有人建议将selpercatinib作为一种有效的药物来治疗这些疾病。目前,全世界都在应对SARS-CoV-19病毒引起的大流行。许多药物已被评估用于治疗SARS-CoV-19(即新冠肺炎)引起的疾病。在这项研究中,selpercatinib被认为是不同SARS-CoV-19蛋白的潜在抑制剂。在进行的计算研究中,发现了该分子的一些有趣效应。Selpercatinib可以有效地作为质子海绵,在溶液中表现出高质子亲和力。此外,它能够在水溶液中与金属离子形成配合物。具体而言,该化合物对锌离子表现出高度亲和力,锌离子对防止人类细胞内病毒增殖很重要。然而,由于锌离子带电,锌离子不能通过脂质双层进入细胞。因此,我们确定selpercatinib可以作为离子载体,有效地将活性锌离子输送到细胞中。此外,本文还进行了各种量子力学分析,包括能量研究、反应性参数的评估、电子局部化和离域性质的检查,以及非线性光学(NLO)性质和信息熵的评估。进行的对接研究(对接分数-9.3169、-9.1002、-8.1853和-8.1222 kcal mol(-1))表明,selpercatinib与四种分离的SARS-CoV-2蛋白紧密结合。(C) 2020爱思唯尔B.V.版权所有。

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