Literature DB >> 25108022

Mechanistic target of rapamycin inhibition extends cellular lifespan in dendritic cells by preserving mitochondrial function.

Eyal Amiel1, Bart Everts2, Daniel Fritz3, Saritha Beauchamp3, Burong Ge3, Erika L Pearce2, Edward J Pearce4.   

Abstract

TLR-mediated activation of dendritic cells (DCs) is associated with a metabolic transition in which mitochondrial oxidative phosphorylation is inhibited by endogenously synthesized NO and the cells become committed to glucose and aerobic glycolysis for survival. We show that inhibition of mechanistic target of rapamycin (mTOR) extends the lifespan of TLR-activated DCs by inhibiting the induction of NO production, thereby allowing the cells to continue to use their mitochondria to generate ATP, and allowing them the flexibility to use fatty acids or glucose as nutrients to fuel core metabolism. These data provide novel mechanistic insights into how mTOR modulates DC metabolism and cellular longevity following TLR activation and provide an explanation for previous findings that mTOR inhibition enhances the efficacy of DCs in autologous vaccination.
Copyright © 2014 by The American Association of Immunologists, Inc.

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Year:  2014        PMID: 25108022      PMCID: PMC4302759          DOI: 10.4049/jimmunol.1302498

Source DB:  PubMed          Journal:  J Immunol        ISSN: 0022-1767            Impact factor:   5.422


  57 in total

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4.  Persistent inhibition of cell respiration by nitric oxide: crucial role of S-nitrosylation of mitochondrial complex I and protective action of glutathione.

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5.  Hexokinase: the direct link between mitochondrial and glycolytic reactions in rapidly growing cancer cells.

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8.  Nutrient sensing in the mTOR/S6K1 signalling pathway.

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9.  Reversible inhibition of cytochrome c oxidase, the terminal enzyme of the mitochondrial respiratory chain, by nitric oxide. Implications for neurodegenerative diseases.

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Review 10.  Toll-like receptor signaling mechanisms involved in dendritic cell activation: potential therapeutic control of T cell polarization.

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Review 4.  Metabolic regulation of immune responses: therapeutic opportunities.

Authors:  Nadine Assmann; David K Finlay
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5.  Synergistic Combination of Oncolytic Virotherapy and Immunotherapy for Glioma.

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Review 6.  Immunometabolism: A new target for improving cancer immunotherapy.

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7.  Integrative Proteomics and Phosphoproteomics Profiling Reveals Dynamic Signaling Networks and Bioenergetics Pathways Underlying T Cell Activation.

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8.  Cell-Intrinsic Glycogen Metabolism Supports Early Glycolytic Reprogramming Required for Dendritic Cell Immune Responses.

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9.  Analysis of glycogen metabolic pathway utilization by dendritic cells and T cells using custom phenotype metabolic assays.

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Review 10.  MenTORing Immunity: mTOR Signaling in the Development and Function of Tissue-Resident Immune Cells.

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