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    Metabolic programming and PDHK1 control CD4+ T cell subsets and inflammation. 

    Gerriets, VA; Haeberli, L; Hale, LP; Huck, C; Ilkayeva, Olga; Inoue, M; Kishton, RJ; ... (22 authors) (J Clin Invest, 2015-01)
    Activation of CD4+ T cells results in rapid proliferation and differentiation into effector and regulatory subsets. CD4+ effector T cell (Teff) (Th1 and Th17) and Treg subsets are metabolically distinct, yet the specific ...
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    The liver kinase B1 is a central regulator of T cell development, activation, and metabolism. 

    Blagih, J; Griss, T; Jones, RG; MacIver, Nancie Jo; Rathmell, Jeffrey C; Saucillo, DC; Tonelli, L (J Immunol, 2011-10-15)
    T cell activation leads to engagement of cellular metabolic pathways necessary to support cell proliferation and function. However, our understanding of the signal transduction pathways that regulate metabolism and their ...
     

     

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    AuthorMacIver, Nancie Jo (2)
    Rathmell, Jeffrey C (2)
    Blagih, J (1)Gerriets, VA (1)Griss, T (1)Haeberli, L (1)Hale, LP (1)Huck, C (1)Ilkayeva, Olga (1)Inoue, M (1)... View MoreDate Issued2011 (1)2015 (1)TypeJournal article (2)Subject
    Animals (2)
    Cell Differentiation (2)
    Cell Proliferation (2)Cell Survival (2)Protein-Serine-Threonine Kinases (2)CD4-Positive T-Lymphocytes (1)Cell Separation (1)Cells, Cultured (1)Encephalomyelitis, Autoimmune, Experimental (1)Energy Metabolism (1)... View MoreAffiliation of Duke Author(s)Basic Science Departments (2)
    Clinical Science Departments (2)
    Duke (2)Duke Molecular Physiology Institute (2)Immunology (2)
    Institutes and Centers (2)
    Pediatrics (2)Pediatrics, Endocrinology (2)Pharmacology & Cancer Biology (2)Sarah Stedman Nutrition & Metabolism Center (2)... View More