Viral syncytia evolve to resist interferon
Abstract
Abstract SARS-CoV-2, like many viruses, generates syncytia but the role of syncytia formation in viral evolution remains unknown. Using SARS-CoV-2 and SARS-CoV-2 Spike (S) replacement vesicular stomatitis (VSV), we show that S-mediated syncytia impair the antiviral effects of interferons in cultured cells, human lung cell cultures, and hACE2 transgenic mice. Amino acid substitutions that modulate syncytia formation in Delta- and Omicron-encoded S have parallel effects on viral interferon resistance. S-mediated syncytia compromise antibody-mediated virus neutralization in cultured cells. We recapitulate interferon and neutralizing antibody resistance in syncytia generated by the orthoreovirus p14 fusion-associated small transmembrane (FAST) protein in VSV, influenza virus, and seasonal coronavirus OC43 infections. These findings explain selection of SARS-CoV-2 fusogenic variants in humans and, more generally, the evolution of fusogenic viruses driven by adaptive and innate immunity.
Article Details
Authors (17)
Tiansheng Li
Insung Kang
Juan Ye
Zhe Hu
James Gibbs
Chengjin Ye
Disease Intervention and Prevention, Texas Biomedical Research Institute
Kazuyo Takeda
Ivan Kosik
Guoli Shi
Jaroslav Holly
Martina Kosikova
Zhiping Ye
Alex A. Compton
Luis Martinez-Sobrido
Reed F. Johnson
Hang Xie
Jonathan W. Yewdell