» Articles » PMID: 24515893

Anion Exchanger 2 is Critical for CD8(+) T cells to Maintain PHi Homeostasis and Modulate Immune Responses

Overview
Journal Eur J Immunol
Date 2014 Feb 12
PMID 24515893
Citations 15
Authors
Affiliations
Soon will be listed here.
Abstract

Mitogenic stimulation of lymphocytes involves alkalinization of intracellular pH (pHi ). Subsequent pHi regulation may involve HCO3 (-) extrusion through Cl(-) /HCO3 (-) exchangers and/or Na(+) -HCO3 (-) co-transporters with acid-loading capability. Abnormalities in these mechanisms could result in immune dysfunctions, as suggested by the CD8(+) T-cell expansion encountered in mice lacking Ae2 (a widely expressed acid loader with electroneutral and Na(+) -independent Cl(-) /HCO3 (-) anion-exchange activity). Here we report that CD8(+) T cells but not CD4(+) T cells or other lymphocyte populations, are crucially dependent on Ae2 for pHi regulation. While total lymphocytes (including isolated CD4(+) T cells) exhibit Ae1 expression and Na(+) -HCO3 (-) co-transport with acidifying potential, CD8(+) T cells lack these acid-loading mechanisms. In Ae2-KO mice, CD4(+) but not CD8(+) T cells upregulate these potential Ae2 surrogates. As a consequence, Ae2-KO CD8(+) T cells exhibit alkalinized pHi , and dramatically increase their pHi upon CD3 stimulation. Moreover, stimulated Ae2-deficient CD8(+) T cells show enhanced intracellular production of IL-2 and membrane expression of its receptor IL-2Rα, together with increased cell proliferation and activation. These findings demonstrate that CD8(+) T cells are critically dependent on Ae2 for pHi homeostasis and tuning of cell proliferation and activation. Ae2 thus constitutes a novel target to modulate CD8(+) T-cell responses.

Citing Articles

Structural and functional insights into the lipid regulation of human anion exchanger 2.

Zhang W, Ding D, Lu Y, Chen H, Jiang P, Zuo P Nat Commun. 2024; 15(1):759.

PMID: 38272905 PMC: 10810954. DOI: 10.1038/s41467-024-44966-0.


TCR signaling promotes formation of an STS1-Cbl-b complex with pH-sensitive phosphatase activity that suppresses T cell function in acidic environments.

Tsai Y, Arias-Badia M, Kadlecek T, Lwin Y, Srinath A, Shah N Immunity. 2023; 56(12):2682-2698.e9.

PMID: 38091950 PMC: 10785950. DOI: 10.1016/j.immuni.2023.11.010.


Animal models of primary biliary cholangitis: status and challenges.

Wang X, Wei Y, Yang Y, Yang Y, Li H, Li Y Cell Biosci. 2023; 13(1):214.

PMID: 37993960 PMC: 10664283. DOI: 10.1186/s13578-023-01170-9.


Manipulation of metabolic pathways to promote stem-like and memory T cell phenotypes for immunotherapy.

Claiborne M Front Immunol. 2023; 13:1061411.

PMID: 36741362 PMC: 9889361. DOI: 10.3389/fimmu.2022.1061411.


Overcoming T cell dysfunction in acidic pH to enhance adoptive T cell transfer immunotherapy.

Navarro F, Casares N, Martin-Otal C, Lasarte-Cia A, Gorraiz M, Sarrion P Oncoimmunology. 2022; 11(1):2070337.

PMID: 35529677 PMC: 9067511. DOI: 10.1080/2162402X.2022.2070337.