Related Experiment Video
Updated: Aug 24, 2025

Measuring Mitochondrial Function of Naïve and Effector CD8 T Cells
Published on: March 28, 2025
MPYS Modulates Fatty Acid Metabolism and Immune Tolerance at Homeostasis Independent of Type I IFNs
Samira Mansouri1, Himanshu Gogoi1, Seema Patel1
1Division of Pulmonary, Critical Care and Sleep Medicine, Department of Medicine, College of Medicine, University of Florida, Gainesville, FL.
Abstract:
MPYS/STING (stimulator of IFN genes) senses cyclic dinucleotides (CDNs), generates type I IFNs, and plays a critical role in infection, inflammation, and cancer. In this study, analyzing genotype and haplotype data from the 1000 Genomes Project, we found that the R71H-G230A-R293Q (HAQ) MPYS allele frequency increased 57-fold in East Asians compared with sub-Saharan Africans. Meanwhile, the G230A-R293Q (AQ) allele frequency decreased by 98% in East Asians compared with sub-Saharan Africans. We propose that the HAQ and AQ alleles underwent a natural selection during the out-of-Africa migration. We used mouse models of HAQ and AQ to investigate the underlying mechanism. We found that the mice carrying the AQ allele, which disappeared in East Asians, had normal CDN-type I IFN responses. Adult AQ mice, however, had less fat mass than did HAQ or wild-type mice on a chow diet. AQ epididymal adipose tissue had increased regulatory T cells and M2 macrophages with protein expression associated with enhanced fatty acid oxidation. Conditional knockout mice and adoptive cell transfer indicate a macrophage and regulatory T cell-intrinsic role of MPYS in fatty acid metabolism. Mechanistically, AQ/IFNAR1-/- mice had a similar lean phenotype as for the AQ mice. MPYS intrinsic tryptophan fluorescence revealed that the R71H change increased MPYS hydrophilicity. Lastly, we found that the second transmembrane (TM) and the TM2-TM3 linker region of MPYS interact with activated fatty acid, fatty acyl-CoA. In summary, studying the evolution of the human MPYS gene revealed an MPYS function in modulating fatty acid metabolism that may be critical during the out-of-Africa migration.
Insights
The MPYS/STING gene evolved during human migration, revealing a new role in regulating fatty acid metabolism. This discovery sheds light on human adaptation and metabolic health.
Area of Science:
- Immunology
- Human Genetics
- Metabolic Research
Background:
- MPYS/STING (stimulator of IFN genes) is crucial for innate immunity, sensing cyclic dinucleotides (CDNs) to produce type I interferons (IFNs).
- Its role in human evolution and metabolic processes remains largely unexplored.
Purpose of the Study:
- To investigate the evolutionary trajectory of MPYS/STING alleles, specifically HAQ and AQ, during human migration.
- To elucidate the functional consequences of these MPYS/STING variants on immune responses and fatty acid metabolism.
Main Methods:
- Analysis of genotype and haplotype data from the 1000 Genomes Project.
- Utilized mouse models (HAQ and AQ variants) for functional studies.
- Employed conditional knockout mice and adoptive cell transfer experiments.
- Investigated protein interactions using tryptophan fluorescence and biochemical assays.
Main Results:
- The MPYS/STING HAQ allele significantly increased in East Asians, while the AQ allele decreased, suggesting selection during out-of-Africa migration.
- Mice with the AQ allele exhibited normal IFN responses but reduced fat mass and enhanced fatty acid oxidation in adipose tissue.
- MPYS/STING plays an intrinsic role in fatty acid metabolism via regulatory T cells and macrophages.
- The R71H substitution in HAQ increases MPYS hydrophilicity, and MPYS interacts with fatty acyl-CoA.
Conclusions:
- Human MPYS/STING evolution has uncovered a novel function in modulating fatty acid metabolism.
- This metabolic regulation may have been critical for human adaptation during migration.
- MPYS/STING is a key regulator of lipid metabolism, influencing T cell and macrophage function.
Related Concept Videos
T Cell Types and Functions
Th1 cells stimulate dendritic cells to express necessary co-stimulatory molecules on their surfaces for...
Inflammatory Response
Inflammation can be triggered by various stimuli, such as impact, abrasion, chemical irritation, infections, and extreme hot or cold temperatures. These can damage cells and connective tissue fibers,...
NF-κB-dependent Signaling Pathway
NF-κB-dependent Signaling Mechanism
The...

