Viral syncytia evolve to resist interferon

T Tiansheng Li I Insung Kang J Juan Ye Z Zhe Hu J James Gibbs C Chengjin Ye (Disease Intervention and Prevention, Texas Biomedical Research Institute) K Kazuyo Takeda I Ivan Kosik G Guoli Shi J Jaroslav Holly M Martina Kosikova Z Zhiping Ye A Alex A. Compton L Luis Martinez-Sobrido R Reed F. Johnson H Hang Xie J Jonathan W. Yewdell

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

Volume / Issue Vol. 1, Issue 1
Published July 20, 2026
ISSN 2041-1723
Publisher Nature Portfolio

Journal Info

Nature Communications

Nature Portfolio

ISSN: 2041-1723 Open Access Life Sciences

Authors (17)

T

Tiansheng Li

I

Insung Kang

J

Juan Ye

Z

Zhe Hu

J

James Gibbs

C

Chengjin Ye

Disease Intervention and Prevention, Texas Biomedical Research Institute

K

Kazuyo Takeda

I

Ivan Kosik

G

Guoli Shi

J

Jaroslav Holly

M

Martina Kosikova

Z

Zhiping Ye

A

Alex A. Compton

L

Luis Martinez-Sobrido

R

Reed F. Johnson

H

Hang Xie

J

Jonathan W. Yewdell