In silico identification of potential natural product inhibitors of human proteases key to SARS-CoV-2 infection
R.P. Vivek-Ananth, Abhijit Rana, Nithin Rajan, Himansu S. Biswal,, Areejit Samal

TL;DR
This study used virtual screening to identify natural plant compounds that could inhibit human proteases essential for SARS-CoV-2 entry, providing potential leads for COVID-19 therapeutics.
Contribution
It presents the first in silico screening of Indian medicinal plant phytochemicals targeting TMPRSS2 and cathepsin L, with identified inhibitors for further testing.
Findings
96 potential TMPRSS2 inhibitors identified
9 potential cathepsin L inhibitors identified
Top inhibitors include Edgeworoside C, Adlumidine, Qingdainone, and Ararobinol
Abstract
Presently, there are no approved drugs or vaccines to treat COVID-19 which has spread to over 200 countries and is responsible for over 3,65,000 deaths worldwide. Recent studies have shown that two human proteases, TMPRSS2 and cathepsin L, play a key role in host cell entry of SARS-CoV-2. Importantly, inhibitors of these proteases were shown to block SARS-CoV-2 infection. Here, we perform virtual screening of 14010 phytochemicals produced by Indian medicinal plants to identify natural product inhibitors of TMPRSS2 and cathepsin L. We built a homology model of TMPRSS2 as an experimentally determined structure is not available. AutoDock Vina was used to perform molecular docking of phytochemicals against TMPRSS2 model structure and cathepsin L crystal structure. Potential phytochemical inhibitors were filtered by comparing their docked binding energies with those of known inhibitors of…
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