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首页> 外文期刊>Tropical biomedicine. >In silico screening of Allium cepa phytochemicals for their binding abilities to SARS and SARS-CoV-2 3C-like protease and COVID-19 human receptor ACE-2
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In silico screening of Allium cepa phytochemicals for their binding abilities to SARS and SARS-CoV-2 3C-like protease and COVID-19 human receptor ACE-2

机译:在SARS和SARS-COV-2 3C样蛋白酶和Covid-19人受体ACE-2中的含有CEPA Phytochemicals的含量CEPA Phytochemicals的植物植物和SARS-COV-2 3蛋白蛋白酶

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Corona virus SARS-CoV-2-induced viral disease (COVID-19) is a zoonotic disease that was initially transmitted from animals to humans. The virus surfaced towards the end of December 2019 in Wuhan, China where earlier SARS (Severe Acute Respiratory Syndrome) had also surfaced in 2003. Unlike SARS, SARS-CoV-2 (a close relative of the SARS virus) created a pandemic, and as of February 24 2021, caused 112,778,672 infections and 2,499,252 deaths world-wide. Despite the best efforts of scientists, no drugs against COVID-19 are yet in sight; five vaccines have received emergency approval in various countries, but it would be a difficult task to vaccinate twice the world population of 8 billion. The objective of the present study was to evaluate through in silico screening a number of phytochemicals in Allium cepa (onion) regarding their ability to bind to the main protease of COVID-19 known as the 3C-like protease or 3CL pro , (PDB ID: 6LU7), 3CL pro of SARS (PDB ID: 3M3V), and human angiotensin converting enzyme-2 (ACE-2), [PDB ID: 1R42], which functions as a receptor for entry of the virus into humans. Molecular docking (blind docking, that is docking not only against any target pocket) were done with the help of AutoDockVina. It was observed that of the twenty-two phytochemicals screened, twelve showed good binding affinities to the main protease of SARS-CoV-2. Surprisingly, the compounds also demonstrated good binding affinities to ACE-2. It is therefore very likely that the binding affinities shown by these compounds against both 3CL pro and ACE-2 merit further study for their potential use as therapeutic agents.
机译:电晕病毒SARS-COV-2诱导的病毒性疾病(Covid-19)是一种最初从动物传播给人类的动物疾病。在2003年早期的SARS(严重急性呼吸道综合征)的武汉曾在2003年曾浮出过武汉的武汉,病毒介绍了2019年12月底。与SARS不同,SARS-COV-2(SARS病毒的密切相关)创造了大流行,而且截至2021年2月24日,造成112,778,672次感染和全世界2,499,252人死亡。尽管科学家的最佳努力,但尚未对Covid-19的毒品尚未到来;五个疫苗接受了各国的紧急批准,但疫苗疫苗是世界人口占80亿的两倍艰巨的任务。本研究的目的是通过在含有Covid-19的含量Covid-19的主蛋白酶结合的能力筛选多种CEPA(洋葱)中的许多植物化学物质进行评估。(PDB ID) :6LU7),3CL PRO的SARS(PDB ID:3M3V)和人血管紧张素转换酶-2(ACE-2),[PDB ID:1R42],其用作病毒进入人类的受体。在Autodockvina的帮助下,在Autodockvina的帮助下完成了分子对接(盲对接,这不仅对抗任何目标口袋)。观察到筛选的二十两种植物化学物质的植物化学物质的筛选,对于SARS-COV-2的主要蛋白酶呈现出良好的结合亲和力。令人惊讶的是,该化合物还对ACE-2表现出良好的结合亲和力。因此,这些化合物与3Cl Pro和ACE-2两者的结合亲和力进行了进一步研究它们作为治疗剂的潜在用途。

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