Metabolic modeling of single Th17 cells reveals regulators of autoimmunity

Autor: Kerry A. Pierce, Manoocher Soleimani, David DeTomaso, Lloyd Bod, Julian Avila-Pacheco, Elliot Akama-Garren, Brandon Schellhaass, Nir Yosef, Vasundhara Singh, Pratiksha I. Thakore, Allon Wagner, Sarah Zaghouani, Clary B. Clish, Raymond A. Sobel, James Kaminski, Alexandra Schnell, Erika L. Pearce, Chao Wang, Johannes Fessler, Daniel J. Puleston, Aviv Regev, Vijay K. Kuchroo, Elena Christian, Noga Ron-Harel, Vivian Paraskevi Douglas, Marcia C. Haigis
Jazyk: angličtina
Rok vydání: 2021
Předmět:
Jumonji Domain-Containing Histone Demethylases
T-Lymphocytes
immunometabolism
experimental autoimmune encephalomyelitis
Autoimmunity
Inbred C57BL
multiple sclerosis
single cell transcriptomics
Mitochondrial Membrane Transport Proteins
Medical and Health Sciences
Transcriptome
Mice
Epigenome
chemistry.chemical_compound
Adenosine Triphosphate
0302 clinical medicine
Models
2.1 Biological and endogenous factors
Glycolysis
Aetiology
Encephalomyelitis
DFMO
in silico metabolic modeling
T helper 17 cell
chemistry.chemical_classification
0303 health sciences
Fatty Acids
hemic and immune systems
Biological Sciences
Regulatory
Chromatin
Aerobiosis
Cell biology
Flux balance analysis
Cytokines
Single-Cell Analysis
Oxidation-Reduction
Algorithms
Eflornithine
polyamines
Citric Acid Cycle
chemical and pharmacologic phenomena
Biology
Autoimmune Disease
General Biochemistry
Genetics and Molecular Biology

Experimental
03 medical and health sciences
Acetyltransferases
spermidine
Putrescine
Genetics
Animals
030304 developmental biology
Inflammatory and immune system
Biological
Brain Disorders
Spermidine
Enzyme
chemistry
Th17 Cells
Polyamine
030217 neurology & neurosurgery
Autoimmune
Developmental Biology
Zdroj: Cell
Cell, vol 184, iss 16
Popis: Metabolism is a major regulator of immune cell function, but it remains difficult to study the metabolic status of individual cells. Here, we present Compass, an algorithm to characterize cellular metabolic states based on single-cell RNA sequencing and flux balance analysis. We applied Compass to associate metabolic states with T helper 17 (Th17) functional variability (pathogenic potential) and recovered a metabolic switch between glycolysis and fatty acid oxidation, akin to known Th17/regulatory Tcell (Treg) differences, which we validated by metabolic assays. Compass also predicted that Th17 pathogenicity was associated with arginine and downstream polyamine metabolism. Indeed, polyamine-related enzyme expression was enhanced in pathogenic Th17 and suppressed in Treg cells. Chemical and genetic perturbation of polyamine metabolism inhibited Th17 cytokines, promoted Foxp3 expression, and remodeled the transcriptome and epigenome of Th17 cells toward a Treg-like state. Invivo perturbations of the polyamine pathway altered the phenotype of encephalitogenic Tcells and attenuated tissue inflammation in CNS autoimmunity.
Databáze: OpenAIRE