Environmental and genetic disease modifiers of haploinsuffciency of A20
Zammit, N. N.; Gray, P.; Siggs, O. M.; Yap, J. Y.; Russell, A.; Cultrone, D.; Warren, J.; Walters, S. N.; Brink, R. T.; Zahra, D.; Burnett, D. L.; Gayevskiy, V.; Minoche, A. E.; Ziegler, J. B.; Craig, M. E.; Wong, M.; Benitez-Aguirre, P.; Teo, J.; Cowley, M. J.; Dinger, M. E.; Tangye, S. G.; Burk, C.; Phan, T. G.; Goodnow, C. J.; Grey, S. T.
Show abstract
Monogenic diseases can often manifest diverse clinical phenotypes and cause diagnostic dilemmas. While monoallelic loss-of-function variants in TNFAIP3 (Haploinsufficiency of A20; HA20) cause a highly penetrant autoinflammatory disease, the variable expressivity suggest a role for additional genetic and environmental disease modifiers. Here, we identify critically ill children who inherited a family-specific TNFAIP3 deletion from one of their otherwise healthy parents. Each of the probands also inherited in trans a subtle loss-of-function I207L TNFAIP3 variant that is common in Oceania, originally introgressed from Denisovans. Modelling this compound heterozgous state in mice under specific pathogen free conditions demonstrated a reduced threshold to break immune tolerance. Exaggerated immune responses were precipitated by inheriting the two genetic hits on the TNFAIP3 checkpoint coupled with increasing the microbial challenge to immune tolerance, either by co-housing with pet store mice carrying a wild microbial burden or by transient dietary exposure to a chemical that diminishes the intestinal mucin barrier separating gut microbes from immune sensing systems. These data illuminate second-hit genetic and environmental modifiers contributing to complex inflammatory and autoimmune disease. Increased mechanistic understanding of the presence and contribution of disease modifiers will aid diagnostic and prognostic patient stratification and potentially reveal novel therapeutic opportunities.
Matching journals
The top 6 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- A20's Linear Ubiquitin Binding Motif Restrains Pathogenic Activation of TH17/22 cells and IL-22 Driven Enteritis 96%
- Maintenance DNA methylation is essential for regulatory T cell development and stability of suppressive function 95%
- Distinct Colitis-Associated Macrophages Drive NOD2-Dependent Bacterial Sensing and Gut Homeostasis 95%
Similar papers in this journal
- Laboratory mice with a wild microbiota generate strong allergic immune responses 95%
- Regulatory T cells restrain skin inflammation by modulating peripheral neuron activation 94%
- Integrated single-cell transcriptomics and epigenomics reveals strong germinal center-associated etiology of autoimmune risk loci 94%
Similar papers in this journal
Similar papers in this journal
- A Gut Microbial Peptide and Molecular Mimicry in the Pathogenesis of Type 1 Diabetes 94%
- Common homozygosity for predicted loss-of-function variants reveals both redundant and advantageous effects of dispensable human genes 94%
- Immune dysregulation in SHARPIN-deficient mice is dependent on CYLD-mediated cell death 94%
Similar papers in this journal
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.