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dc.contributor.authorFinlay, Daviden
dc.date.accessioned2019-10-29T08:17:13Z
dc.date.available2019-10-29T08:17:13Z
dc.date.issued2012en
dc.date.submitted2012en
dc.identifier.citationDavid K. Finlay, Ella Rosenzweig, Linda V. Sinclair, Carmen Feijoo-Carnero, Jens L. Hukelmann, Julia Rolf, Andrey A. Panteleyev, Klaus Okkenhaug, Doreen A. Cantrell, PDK1 regulation of mTOR and Hypoxia-inducible factor 1 integrate metabolism and migration of CD8+ T cells, Journal of Experimental Medicine, 209, 13, 2012, 2441 - 2453en
dc.identifier.otherYen
dc.descriptionPUBLISHEDen
dc.description.abstractmTORC1 (mammalian target of rapamycin complex 1) controls transcriptional programs that determine CD8+ cytolytic T cell (CTL) fate. In some cell systems, mTORC1 couples phosphatidylinositol-3 kinase (PI3K) and Akt to the control of glucose uptake and glycolysis. However, PI3K–Akt-independent mechanisms control glucose metabolism in CD8+ T cells, and the role of mTORC1 has not been explored. The present study now demonstrates that mTORC1 activity in CD8+ T cells is not dependent on PI3K or Akt but is critical to sustain glucose uptake and glycolysis in CD8+ T cells. We also show that PI3K- and Akt-independent pathways mediated by mTORC1 regulate the expression of HIF1 (hypoxia-inducible factor 1) transcription factor complex. This mTORC1–HIF1 pathway is required to sustain glucose metabolism and glycolysis in effector CTLs and strikingly functions to couple mTORC1 to a diverse transcriptional program that controls expression of glucose transporters, multiple rate-limiting glycolytic enzymes, cytolytic effector molecules, and essential chemokine and adhesion receptors that regulate T cell trafficking. These data reveal a fundamental mechanism linking nutrient and oxygen sensing to transcriptional control of CD8+ T cell differentiation.en
dc.format.extent2441en
dc.format.extent2453en
dc.language.isoenen
dc.relation.ispartofseriesJournal of Experimental Medicineen
dc.relation.ispartofseries209en
dc.relation.ispartofseries13en
dc.rightsYen
dc.subjectCD8-Positive T-Lymphocytesen
dc.subjectAnimalsen
dc.subjectMiceen
dc.subjectInbred C57BLen
dc.subjectTransgenicen
dc.subjectMutant Strainsen
dc.subjectMultiprotein Complexesen
dc.subjectProtein-Serine-Threonine Kinasesen
dc.subjectGlucoseen
dc.subjectProteinsen
dc.subjectReceptoren
dc.subjectChemokineen
dc.subjectAntigenen
dc.subjectT-Cellen
dc.subjectInterleukin-2en
dc.subjectCell Differentiationen
dc.subjectCell Movementen
dc.subjectGene Expression Regulationen
dc.subjectGlycolysisen
dc.subjectProto-Oncogene Proteins c-akten
dc.subjectAryl Hydrocarbon Receptor Nuclear Translocatoren
dc.subjectHypoxia-Inducible Factor 1en
dc.subjectAlpha Subuniten
dc.subjectPhosphatidylinositol 3-Kinasesen
dc.subjectTOR Serine-Threonine Kinasesen
dc.subject3-Phosphoinositide-Dependent Protein Kinasesen
dc.subjectMechanistic Target of Rapamycin Complex 1en
dc.titlePDK1 regulation of mTOR and Hypoxia-inducible factor 1 integrate metabolism and migration of CD8+ T cellsen
dc.typeJournal Articleen
dc.type.supercollectionscholarly_publicationsen
dc.type.supercollectionrefereed_publicationsen
dc.identifier.peoplefinderurlhttp://people.tcd.ie/finlayden
dc.identifier.rssinternalid81654en
dc.rights.ecaccessrightsopenAccess
dc.subject.TCDThemeImmunology, Inflammation & Infectionen
dc.identifier.rssurihttp://www.ncbi.nlm.nih.gov/pubmed/23183047en
dc.identifier.orcid_id0000-0003-2716-6679en
dc.identifier.urihttp://hdl.handle.net/2262/89909


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