Impact of SARS-CoV-2 Spike Mutations on Its Activation by TMPRSS2 and the Alternative TMPRSS13 Protease

Els Vanstreels, Lieve Naesens, Manon Laporte, Annelies Stevaert, Valerie Raeymaekers, Ria Van Berwaer, Julie Vandeput, Cato Mestdagh
2022-08-01

SCID:  54.1/znmwtz52
Since its introduction in humans, SARS-CoV-2 is evolving with frequent appearance of new variants. The surveillance would benefit from proactive characterization of the functional motifs in the spike (S) protein, the most variable viral factor. This is linked to immune evasion but also influences spike functioning. Remarkably, though located in a strongly immunogenic region, the S2' cleavage motif has, thus far, remained highly conserved. This suggests that its sequence is critical for spike activation by airway proteases. To investigate this, we assessed how pseudovirus entry is affected by changes in the S2' motif. We demonstrate that TMPRSS2 readily accepts variations in this motif, whereas the alternative TMPRSS13 protease is more fastidious. The Wuhan-Hu-1, G614, Delta and Omicron spikes showed no difference in this regard. Being the first in its kind, our study will help to assess the impact of S2' variations as soon as they are detected during variant surveillance.
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2022-08-01
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Els Vanstreels
Lieve Naesens
Manon Laporte
Annelies Stevaert
Valerie Raeymaekers
Ria Van Berwaer
Julie Vandeput
Cato Mestdagh
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