Broadly neutralizing antibodies isolated from HEV convalescents confer protective effects in human liver-chimeric mice

G George Ssebyatika K Katja Dinkelborg L Luisa J. Ströh (Interfaculty Institute of Biochemistry, University of Tübingen) F Florian Hinte L Laura Corneillie L Lucas Hueffner E Elina M. Guzman P Prossie L. Nankya N Nina Plückebaum L Lukas Fehlau J Jonathan Garn N Nele Meyer S Sarah Prallet A Ann-Kathrin Mehnert A Anke R. M. Kraft L Lieven Verhoye C Carina Jacobsen E Eike Steinmann (Department for Molecular and Medical Virology, Ruhr University Bochum) H Heiner Wedemeyer A Abel Viejo-Borbolla V Viet Loan Dao Thi T Thomas Pietschmann (TWINCORE, Centre for Experimental and Clinical Infection Research, A Joint Venture between Helmholtz-Centre for Infection Research and Hannover Medical School) M Marc Lütgehetmann P Philip Meuleman M Maura Dandri T Thomas Krey (Institute of Biochemistry, Center of Structural and Cell Biology in Medicine, University of Lübeck, Lübeck, Germany.) P Patrick Behrendt

Abstract

Abstract Hepatitis E virus (HEV) causes 3.3 million symptomatic cases and 44,000 deaths per year. Chronic infections can arise in immunocompromised individuals, and pregnant women may suffer from fulminant disease as a consequence of HEV infection. Despite these important implications for public health, no specific antiviral treatment has been approved to date. Here, we report combined functional, biochemical, and X-ray crystallographic studies that characterize the human antibody response in convalescent HEV patients. We identified a class of potent and broadly neutralizing human antibodies (bnAbs), targeting a quaternary epitope located at the tip of the HEV capsid protein pORF2 that contains an N-glycosylation motif and is conserved across members of the Hepeviridae. These glycan-sensitive bnAbs specifically recognize the non-glycosylated pORF2 present in infectious particles but not the secreted glycosylated form acting as antibody decoy. Our most potent bnAb protects human liver-chimeric mice from intraperitoneal HEV challenge and co-housing exposure. These results provide insights into the bnAb response to this important emerging pathogen and support the development of glycan-sensitive antibodies to combat HEV infection.

Article Details

Volume / Issue Vol. 16, Issue 1
Published February 26, 2025
ISSN 2041-1723
Publisher Nature Portfolio

Journal Info

Nature Communications

Nature Portfolio

ISSN: 2041-1723 Open Access Life Sciences

Authors (27)

G

George Ssebyatika

K

Katja Dinkelborg

L

Luisa J. Ströh

Interfaculty Institute of Biochemistry, University of Tübingen

F

Florian Hinte

L

Laura Corneillie

L

Lucas Hueffner

E

Elina M. Guzman

P

Prossie L. Nankya

N

Nina Plückebaum

L

Lukas Fehlau

J

Jonathan Garn

N

Nele Meyer

S

Sarah Prallet

A

Ann-Kathrin Mehnert

A

Anke R. M. Kraft

L

Lieven Verhoye

C

Carina Jacobsen

E

Eike Steinmann

Department for Molecular and Medical Virology, Ruhr University Bochum

H

Heiner Wedemeyer

A

Abel Viejo-Borbolla

V

Viet Loan Dao Thi

T

Thomas Pietschmann

TWINCORE, Centre for Experimental and Clinical Infection Research, A Joint Venture between Helmholtz-Centre for Infection Research and Hannover Medical School

M

Marc Lütgehetmann

P

Philip Meuleman

M

Maura Dandri

T

Thomas Krey

Institute of Biochemistry, Center of Structural and Cell Biology in Medicine, University of Lübeck, Lübeck, Germany.

P

Patrick Behrendt