Mitochondrial dysfunction-associated microbiota establishes a transmissible refractory response to anti-TNF therapy during ulcerative colitis.
Ainize Peña-CearraJanire CasteloJose Luis LavínMonika González-LopezMiguel Angel Pascual-ItoizMiguel FuertesVirginia Gutiérrez de JuanLaura BárcenaItziar Martín-RuizAize PellónIratxe SeoaneDiego BarrialesAinhoa PalaciosAsier FullaondoIago Rodriguez-LagoMaría Luz Martínez-ChantarAna María AransayHector RodriguezJuan AnguitaLeticia AbeciaPublished in: Gut microbes (2023)
Anti-TNF therapy can induce and maintain a remission status during intestinal bowel disease. However, up to 30% of patients do not respond to this therapy by mechanisms that are unknown. Here, we show that the absence of MCJ, a natural inhibitor of the respiratory chain Complex I, induces gut microbiota changes that are critical determinants of the lack of response in a murine model of DSS-induced inflammation. First, we found that MCJ expression is restricted to macrophages in human colonic tissue. Therefore, we demonstrate by transcriptomic analysis of colon macrophages from DSS-induced mice that MCJ-deficiency is linked to the expression of genes belonging to the FcγR signaling pathway and contains an anti-TNF refractory gene signature identified in ulcerative colitis patients. The gut microbial composition changes observed upon DSS treatment in the MCJ-deficient mice revealed the increased presence of specific colitogenic members, including Ruminococcus gnavus and Oscillospira , which could be associated with the non-response to TNF inhibitors. Further, we show that the presence of a microbiota associated resistance to treatment is dominant and transmissible to responsive individuals. Collectively, our findings underscore the critical role played by macrophage mitochondrial function in the gut ecological niche that can substantially affect not only the severity of inflammation but also the ability to successfully respond to current therapies.
Keyphrases
- ulcerative colitis
- rheumatoid arthritis
- newly diagnosed
- ejection fraction
- signaling pathway
- oxidative stress
- poor prognosis
- endothelial cells
- high glucose
- type diabetes
- prognostic factors
- genome wide
- diabetic rats
- single cell
- microbial community
- metabolic syndrome
- climate change
- replacement therapy
- dna methylation
- patient reported outcomes
- long non coding rna
- binding protein
- pi k akt
- insulin resistance
- rna seq
- systemic lupus erythematosus
- cell proliferation
- high fat diet induced
- respiratory tract