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      Metabolic pathways in T cell activation and lineage differentiation.

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          Abstract

          Recent advances in the field of immunometabolism support the concept that fundamental processes in T cell biology, such as TCR-mediated activation and T helper lineage differentiation, are closely linked to changes in the cellular metabolic programs. Although the major task of the intermediate metabolism is to provide the cell with a constant supply of energy and molecular precursors for the production of biomolecules, the dynamic regulation of metabolic pathways also plays an active role in shaping T cell responses. Key metabolic processes such as glycolysis, fatty acid and mitochondrial metabolism are now recognized as crucial players in T cell activation and differentiation, and their modulation can differentially affect the development of T helper cell lineages. In this review, we describe the diverse metabolic processes that T cells engage during their life cycle from naïve towards effector and memory T cells. We consider in particular how the cellular metabolism may actively support the function of T cells in their different states. Moreover, we discuss how molecular regulators such as mTOR or AMPK link environmental changes to adaptations in the cellular metabolism and elucidate the consequences on T cell differentiation and function.

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          Author and article information

          Journal
          Semin. Immunol.
          Seminars in immunology
          Elsevier BV
          1096-3618
          1044-5323
          Oct 2016
          : 28
          : 5
          Affiliations
          [1 ] Institute of Infection Immunology, TWINCORE, Centre for Experimental and Clinical Infection Research, A Joint Venture Between the Medical School Hannover (MHH) and the Helmholtz Centre for Infection Research (HZI), Hannover, Germany.
          [2 ] Institute of Infection Immunology, TWINCORE, Centre for Experimental and Clinical Infection Research, A Joint Venture Between the Medical School Hannover (MHH) and the Helmholtz Centre for Infection Research (HZI), Hannover, Germany. Electronic address: tim.sparwasser@twincore.de.
          Article
          S1044-5323(16)30106-3
          10.1016/j.smim.2016.10.009
          27825556
          03bda2db-03fd-4789-8022-2c8e413db502
          History

          ACC,AMPK,Fatty acid metabolism,Glycolysis,Metabolism,T cells,mTOR
          ACC, AMPK, Fatty acid metabolism, Glycolysis, Metabolism, T cells, mTOR

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