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Targeting an evolutionarily conserved "E-L-L" motif in the spike protein to develop a small molecule fusion inhibitor against SARS-CoV-2

biorxiv. 2022-03; 
Indrani Das Jana, Prabuddha Bhttacharya, Karthick Mayilsamy, Saptarshi Banerjee, Gourab Bhattacharje, Sayan Das, Seemanti Aditya, Anandita Ghosh, Andrew R McGill, Syamanthak Srikrishnan, Amit Kumar Das, Amit Basak, Shyam S Mohapatra, Bala Chandran, Devesh Bhimsaria, Subhra Mohapatra, Arunava Roy, Arindam Mondal
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摘要

As newer variants of SARS-CoV-2 continue to pose major threats to global human health and economy, identifying novel druggable antiviral targets is the key towards sustenance. Here, we identify an evolutionary conserved E-L-L motif present within the HR2 domain of all human and non-human coronavirus spike (S) proteins that play a crucial role in stabilizing the post-fusion six-helix bundle (6-HB) structure and thus, fusion-mediated viral entry. Mutations within this motif reduce the fusogenicity of the S protein without affecting its stability or membrane localization. We found that posaconazole, an FDA-approved drug, binds to this E-L-L motif resulting in effective inhibition of SARS-CoV-2 infection in cells. ... More

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