Author: Amanda D. Melin; Mareike C. Janiak; Frank Marrone; Paramjit S. Arora; James P. Higham
Title: Comparative ACE2 variation and primate COVID-19 risk Document date: 2020_4_11
ID: bieqw3x1_5
Snippet: We assessed the amino acid residues identified as critical for ACE2 recognition by CoV RBD, and undertook protein modeling to gauge the likely effect of the differences. Our aim was to develop predictions about the susceptibility of our closest living relatives to SARS-CoV-2 to guide all stakeholders, including researchers, caretakers, practitioners, conservationists, and governmental and nongovernmental agencies......
Document: We assessed the amino acid residues identified as critical for ACE2 recognition by CoV RBD, and undertook protein modeling to gauge the likely effect of the differences. Our aim was to develop predictions about the susceptibility of our closest living relatives to SARS-CoV-2 to guide all stakeholders, including researchers, caretakers, practitioners, conservationists, and governmental and nongovernmental agencies.
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