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10.1016/j.jmb.2020.166762

http://scihub22266oqcxt.onion/10.1016/j.jmb.2020.166762
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33340519!7744274!33340519
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suck abstract from ncbi


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pmid33340519      J+Mol+Biol 2021 ; 433 (4): 166762
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  • Subtle Influence of ACE2 Glycan Processing on SARS-CoV-2 Recognition #MMPMID33340519
  • Allen JD; Watanabe Y; Chawla H; Newby ML; Crispin M
  • J Mol Biol 2021[Feb]; 433 (4): 166762 PMID33340519show ga
  • The severity of SARS-CoV-2 infection is highly variable and yet the molecular basis for this effect remains elusive. One potential contribution are differences in the glycosylation of target human cells, particularly as SARS-CoV-2 has the capacity to bind sialic acid which is a common, and highly variable, terminal modification of glycans. The viral spike glycoprotein (S) of SARS-CoV-2 and the human cellular receptor, angiotensin-converting enzyme 2 (ACE2) are both densely glycosylated. We therefore sought to investigate whether the glycosylation state of ACE2 impacts the interaction with SARS-CoV-2 viral spike. We generated a panel of engineered ACE2 glycoforms which were analyzed by mass spectrometry to reveal the site-specific glycan modifications. We then probed the impact of ACE2 glycosylation on S binding and revealed a subtle sensitivity with hypersialylated or oligomannose-type glycans slightly impeding the interaction. In contrast, deglycosylation of ACE2 did not influence SARS-CoV-2 binding. Overall, ACE2 glycosylation does not significantly influence viral spike binding. We suggest that any role of glycosylation in the pathobiology of SARS-CoV-2 will lie beyond its immediate impact of receptor glycosylation on virus binding.
  • |Angiotensin-Converting Enzyme 2/chemistry/*metabolism[MESH]
  • |COVID-19/*metabolism[MESH]
  • |Glycosylation[MESH]
  • |Host-Pathogen Interactions[MESH]
  • |Humans[MESH]
  • |Models, Molecular[MESH]
  • |Polysaccharides/analysis[MESH]
  • |Protein Binding[MESH]
  • |SARS-CoV-2/*physiology[MESH]


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