A specific microbial consortium enhances Th1 immunity, improves LCMV viral clearance but aggravates LCMV disease pathology in mice

D Daphne Kolland M Miriam Kuhlmann G Gustavo P. de Almeida A Amelie Köhler A Anela Arifovic A Alexandra von Strempel M Mohsen Pourjam S Silvia Bolsega C Christine Wurmser K Katja Steiger M Marijana Basic K Klaus Neuhaus C Carsten B. Schmidt-Weber B Bärbel Stecher D Dietmar Zehn C Caspar Ohnmacht

Abstract

Abstract Anti-viral immunity can vary tremendously from individual to individual but mechanistic understanding is still scarce. Here, we show that a defined, low complex bacterial community (OMM12) but not the general absence of microbes in germ-free mice leads to a more potent immune response compared to the microbiome of specific-pathogen-free (SPF) mice after a systemic viral infection with LCMV Clone-13. Consequently, gnotobiotic mice colonized with OMM12 have more severe LCMV-induced disease pathology but also enhance viral clearance in the intestinal tract. Mechanistically, single-cell RNA sequencing analysis of adoptively transferred virus-specific T helper cells and endogenous T helper cells in the intestinal tract reveal a stronger pro-inflammatory Th1 profile and a more vigorous expansion in OMM12 than SPF mice. Altogether, our work highlights the causative function of the intestinal microbiome for shaping adaptive anti-viral immunity with implications for vaccination strategies and anti-cancer treatment regimens.

Article Details

Volume / Issue Vol. 16, Issue 1
Published April 25, 2025
ISSN 2041-1723
Publisher Nature Portfolio

Journal Info

Nature Communications

Nature Portfolio

ISSN: 2041-1723 Open Access Life Sciences

Authors (16)

D

Daphne Kolland

M

Miriam Kuhlmann

G

Gustavo P. de Almeida

A

Amelie Köhler

A

Anela Arifovic

A

Alexandra von Strempel

M

Mohsen Pourjam

S

Silvia Bolsega

C

Christine Wurmser

K

Katja Steiger

M

Marijana Basic

K

Klaus Neuhaus

C

Carsten B. Schmidt-Weber

B

Bärbel Stecher

D

Dietmar Zehn

C

Caspar Ohnmacht