The glycolytic reaction PGAM unexpectedly restrains Th17 pathogenicity and Th17-dependent autoimmunity
Wang, C.; Wagner, A.; Fessler, J.; DeTomaso, D.; Zaghouani, S.; Zhou, Y.; Pierce, K.; Sobel, R. A.; Clish, C.; Yosef, N.; Kuchroo, V. K.
Show abstract
Glucose metabolism is a critical regulator of T cell function, largely thought to support their activation and effector differentiation. Here, we investigate the relevance of individual glycolytic reactions in determining the pathogenicity of T helper 17 (Th17) cells using single-cell RNA-seq and Compass, an algorithm we previously developed for estimating metabolic flux from single-cell transcriptomes. Surprisingly, Compass predicted that the metabolic shunt between 3-phosphoglycerate (3PG) and 2-phosphoglycerate (2PG) is inversely correlated with pathogenicity in these cells, whereas both its upstream and downstream reactions were positively correlated. Perturbation of phosphoglycerate mutase (PGAM), an enzyme required for 3PG to 2PG conversion, resulted in an increase in protein expression of IL2, IL17, and TNFa, as well as induction of a pathogenic gene expression program. Consistent with PGAM playing a pro-regulatory role, inhibiting PGAM in Th17 cells resulted in exacerbated autoimmune responses in the adoptive transfer model of experimental autoimmune encephalomyelitis (EAE). Finally, we further investigated the effects of modulating glucose concentration on Th17 cells in culture. Th17 cells differentiated under high- and low-glucose conditions substantially differed in their metabolic and effector transcriptomic programs, both central to Th17 function. Importantly, the PGAM-dependent gene module marks the least pathogenic state of Th17 cells irrespective of glucose concentration. Overall, our study identifies PGAM, contrary to other glycolytic enzymes, as a negative regulator of Th17 pathogenicity.
Matching journals
The top 4 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- A diet-dependent host metabolite shapes the gut microbiota to protect from autoimmunity 96%
- CD8+ T Cell Metabolic Rewiring Defined by Single-Cell RNA-Sequencing Identifies a Critical Role of ASNS Expression Dynamics in T Cell Differentiation 95%
- Triglyceride metabolism controls inflammation and APOE4-associated disease states in microglia 94%
Similar papers in this journal
- Single-cell transcriptomics identifies an effectorness gradient shaping the response of CD4+ T cells to cytokines 96%
- Metformin enhances anti-mycobacterial responses by educating immunometabolic circuits of CD8+ T cells 96%
- Single-cell profiling uncovers regulatory programs of pathogenic Th2 cells in allergic asthma 95%
Similar papers in this journal
- Phosphoglycerate mutase regulates Treg differentiation through control of serine synthesis and one-carbon metabolism 97%
- CXXC-finger protein 1 associates with FOXP3 to stabilize homeostasis and suppressive functions of regulatory T cells 96%
- Longitudinal analysis of invariant natural killer T cell activation reveals a cMAF-associated transcriptional state of NKT10 cells 95%
Similar papers in this journal
- The chromatin landscape of Th17 cells reveals mechanisms of diversification of regulatory and pro-inflammatory states 96%
- Stepwise chromatin and transcriptional acquisition of an intraepithelial lymphocyte program 95%
- Selective IL-27 production by intestinal regulatory T cells permits gut-specific regulation of Th17 immunity 95%
Similar papers in this journal
- IL-9 as a naturally orthogonal cytokine with optimal JAK/STAT signaling for engineered T cell therapy 95%
- Soluble CTLA-4 mainly produced by Treg cells inhibits type 1 inflammation without hindering type 2 immunity to allow for inflammation resolution 94%
- Ribosome-targeting antibiotics impair T cell effector function and ameliorate autoimmunity by blocking mitochondrial protein synthesis 94%
"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.