The role of lipid metabolism in shaping the expansion and the function of regulatory T cells

Author:

Pinzon Grimaldos Alessandra1,Bini Simone2,Pacella Ilenia1,Rossi Alessandra1,Di Costanzo Alessia2,Minicocci Ilenia2,D’Erasmo Laura2ORCID,Arca Marcello2,Piconese Silvia134ORCID

Affiliation:

1. Department of Internal Clinical, Anesthesiological and Cardiovascular Sciences, Sapienza University of Rome , Rome , Italy

2. Department of Translational and Precision Medicine, Sapienza University of Rome, Policlinico Umberto I , Rome , Italy

3. Laboratory affiliated to Istituto Pasteur Italia Fondazione Cenci Bolognetti , Rome , Italy

4. Neuroimmunology Unit, Fondazione IRCCS Santa Lucia , Rome , Italy

Abstract

Abstract Metabolic inflammation, defined as a chronic low-grade inflammation, is implicated in numerous metabolic diseases. In recent years, the role of regulatory T cells (Tregs) as key controllers of metabolic inflammation has emerged, but our comprehension on how different metabolic pathways influence Treg functions needs a deeper understanding. Here we focus on how circulating and intracellular lipid metabolism, in particular cholesterol metabolism, regulates Treg homeostasis, expansion, and functions. Cholesterol is carried through the bloodstream by circulating lipoproteins (chylomicrons, very low-density lipoproteins, low-density lipoproteins). Tregs are equipped with a wide array of metabolic sensors able to perceive and respond to changes in the lipid environment through the activation of different intracellular pathways thus conferring to these cells a crucial metabolic and functional plasticity. Nevertheless, altered cholesterol transport, as observed in genetic dyslipidemias and atherosclerosis, impairs Treg proliferation and function through defective cellular metabolism. The intracellular pathway devoted to the cholesterol synthesis is the mevalonate pathway and several studies have shown that this pathway is essential for Treg stability and suppressive activity. High cholesterol concentrations in the extracellular environment may induce massive accumulation of cholesterol inside the cell thus impairing nutrients sensors and inhibiting the mevalonate pathway. This review summarizes the current knowledge regarding the role of circulating and cellular cholesterol metabolism in the regulation of Treg metabolism and functions. In particular, we will discuss how different pathological conditions affecting cholesterol transport may affect cellular metabolism in Tregs.

Funder

Sapienza Università di Roma - Progetti di Ricerca di Ateneo

Associazione Italiana per la Ricerca sul Cancro

Ministry of Education

University and Research

Italian Ministry of Health

Publisher

Oxford University Press (OUP)

Subject

Immunology,Immunology and Allergy

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