An inherited mitochondrial DNA mutation remodels inflammatory cytokine responses in macrophages and in vivo in mice

E Eloïse Marques S Stephen P. Burr A Alva M. Casey R Richard J. Stopforth C Chak Shun Yu K Keira Turner D Dane M. Wolf M Marisa Dilucca V Vincent Paupe S Suvagata Roy Chowdhury V Victoria J. Tyrrell (Systems Immunity Research Institute and Division of Infection and Immunity, School of Medicine, Cardiff University) R Robbin Kramer Y Yamini M. Kanse C Chinmayi Pednekar C Chris A. Powell J James B. Stewart J Julien Prudent M Michael P. Murphy M Michal Minczuk V Valerie B. O’Donnell C Clare E. Bryant P Patrick F. Chinnery A Arthur Kaser A Alexander von Kriegsheim D Dylan G. Ryan

Abstract

Abstract Impaired mitochondrial bioenergetics in macrophages promotes hyperinflammatory cytokine responses, but whether inherited mtDNA mutations drive similar phenotypes is unknown. Here, we profiled macrophages harbouring a heteroplasmic mitochondrial tRNA Ala mutation ( m.5019A > G ) to address this question. These macrophages exhibit combined respiratory chain defects, reduced oxidative phosphorylation, disrupted cristae architecture, and compensatory metabolic adaptations in central carbon metabolism. Upon inflammatory activation, m.5019A > G macrophages produce elevated type I interferon (IFN), while exhibiting reduced pro-inflammatory cytokines and oxylipins. Mechanistically, suppression of pro-IL-1β and COX2 requires autocrine IFN-β signalling. IFN-β induction is biphasic: an early TLR4-IRF3 driven phase, and a later response involving mitochondrial nucleic acids and the cGAS-STING pathway. In vivo, lipopolysaccharide (LPS) challenge of m.5019A > G mice results in elevated type I IFN signalling and exacerbated sickness behaviour. These findings reveal that a pathogenic mtDNA mutation promotes an imbalanced innate immune response, which has potential implications for the progression of pathology in mtDNA disease patients.

Article Details

Volume / Issue Vol. 16, Issue 1
Published November 20, 2025
ISSN 2041-1723
Publisher Nature Portfolio

Journal Info

Nature Communications

Nature Portfolio

ISSN: 2041-1723 Open Access Life Sciences

Authors (25)

E

Eloïse Marques

S

Stephen P. Burr

A

Alva M. Casey

R

Richard J. Stopforth

C

Chak Shun Yu

K

Keira Turner

D

Dane M. Wolf

M

Marisa Dilucca

V

Vincent Paupe

S

Suvagata Roy Chowdhury

V

Victoria J. Tyrrell

Systems Immunity Research Institute and Division of Infection and Immunity, School of Medicine, Cardiff University

R

Robbin Kramer

Y

Yamini M. Kanse

C

Chinmayi Pednekar

C

Chris A. Powell

J

James B. Stewart

J

Julien Prudent

M

Michael P. Murphy

M

Michal Minczuk

V

Valerie B. O’Donnell

C

Clare E. Bryant

P

Patrick F. Chinnery

A

Arthur Kaser

A

Alexander von Kriegsheim

D

Dylan G. Ryan