T-cells produce acidic niches in lymph nodes to suppress their own effector functions

Author:

Wu Hao,Estrella Veronica,Beatty Matthew,Abrahams Dominique,El-Kenawi AsmaaORCID,Russell ShonaghORCID,Ibrahim-Hashim Arig,Longo Dario LivioORCID,Reshetnyak Yana K.,Moshnikova Anna,Andreev Oleg A.,Luddy Kimberly,Damaghi Mehdi,Kodumudi Krithika,Pillai Smitha R.ORCID,Enriquez-Navas Pedro,Pilon-Thomas Shari,Swietach PawelORCID,Gillies Robert J.ORCID

Abstract

AbstractThe acidic pH of tumors profoundly inhibits effector functions of activated CD8 + T-cells. We hypothesize that this is a physiological process in immune regulation, and that it occurs within lymph nodes (LNs), which are likely acidic because of low convective flow and high glucose metabolism. Here we show by in vivo fluorescence and MR imaging, that LN paracortical zones are profoundly acidic. These acidic niches are absent in athymic Nu/Nu and lymphodepleted mice, implicating T-cells in the acidifying process. T-cell glycolysis is inhibited at the low pH observed in LNs. We show that this is due to acid inhibition of monocarboxylate transporters (MCTs), resulting in a negative feedback on glycolytic rate. Importantly, we demonstrate that this acid pH does not hinder initial activation of naïve T-cells by dendritic cells. Thus, we describe an acidic niche within the immune system, and demonstrate its physiological role in regulating T-cell activation.

Funder

U.S. Department of Health & Human Services | NIH | National Cancer Institute

Fulbright Association

Publisher

Springer Science and Business Media LLC

Subject

General Physics and Astronomy,General Biochemistry, Genetics and Molecular Biology,General Chemistry

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