Irreversible furin cleavage site exposure renders immature tick-borne flaviviruses fully infectious

J Jiří Holoubek J Jiří Salát M Milos Matkovic P Petr Bednář P Pavel Novotný M Martin Hradilek T Taťána Majerová E Ebba Rosendal L Luděk Eyer A Andrea Fořtová M Michaela Beránková L Lesley Bell-Sakyi (Department of Infection Biology and Microbiomes, Institute of Infection, Veterinary and Ecological Sciences, University of Liverpool) A Anna K. Överby A Andrea Cavalli M Massimiliano Bonomi (Institut Pasteur, Université Paris Cité, CNRS UMR 3528, Computational Structural Biology Unit 2 , Paris,) F Felix A. Rey D Daniel Ruzek (Institute of Parasitology, Biology Centre of the Czech Academy of Sciences)

Abstract

Abstract Flavivirus assembly is driven by the envelope glycoproteins pre-membrane (prM) and envelope (E) in the neutral pH environment of the endoplasmic reticulum. Newly budded, spiky particles are exported through the Golgi apparatus, where mildly acidic pH induces a major surface rearrangement. The glycoproteins reorganize into (prM/E)\₂ complexes at the surface of smooth particles, with prM trapped at the E dimer interface, thereby exposing a furin cleavage site (FCS) for proteolytic maturation into infectious virions. Here, we show that in the absence of furin, immature tick-borne flavivirus particles—tick-borne encephalitis virus, Langat virus, and Louping ill virus—remain fully infectious and pathogenic in female BALB/c mice, in contrast to mosquito-borne flaviviruses such as Usutu, West Nile, and Zika viruses. We further show that the FCS in tick-borne viruses remains exposed at neutral pH, allowing furin at the surface of target cells to activate viral fusogenicity, while mosquito-borne counterparts require acidic re-exposure. Mutations increasing the dynamic behavior of the E dimer mimic the mosquito-borne phenotype, with retracted FCS at neutral pH and loss of infectivity. Our multidisciplinary approach—combining virological assays, targeted mutagenesis, structural modeling, and molecular dynamics simulations—highlights the role of E dimer dynamics in regulating flavivirus maturation and infectivity.

Article Details

Volume / Issue Vol. 16, Issue 1
Published August 12, 2025
ISSN 2041-1723
Publisher Nature Portfolio

Journal Info

Nature Communications

Nature Portfolio

ISSN: 2041-1723 Open Access Life Sciences

Authors (17)

J

Jiří Holoubek

J

Jiří Salát

M

Milos Matkovic

P

Petr Bednář

P

Pavel Novotný

M

Martin Hradilek

T

Taťána Majerová

E

Ebba Rosendal

L

Luděk Eyer

A

Andrea Fořtová

M

Michaela Beránková

L

Lesley Bell-Sakyi

Department of Infection Biology and Microbiomes, Institute of Infection, Veterinary and Ecological Sciences, University of Liverpool

A

Anna K. Överby

A

Andrea Cavalli

M

Massimiliano Bonomi

Institut Pasteur, Université Paris Cité, CNRS UMR 3528, Computational Structural Biology Unit 2 , Paris,

F

Felix A. Rey

D

Daniel Ruzek

Institute of Parasitology, Biology Centre of the Czech Academy of Sciences