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PMID: 18848473 Published · ppublish English

The TSC-mTOR signaling pathway regulates the innate inflammatory response.

Immunity ·Vol. 29 ·No. 4 ·2008-12-15

Weichhart Thomas, Costantino Giuseppina, Poglitsch Marko, Rosner Margit, Zeyda Maximilian, Stuhlmeier Karl M, Kolbe Thomas, Stulnig Thomas M, Hörl Walter H, Hengstschläger Markus, Müller Mathias, Säemann Marcus D

Abstract

The innate inflammatory immune response must be tightly controlled to avoid damage to the host. Here, we showed that the tuberous sclerosis complex-mammalian target of rapamycin (TSC-mTOR) pathway regulated inflammatory responses after bacterial stimulation in monocytes, macrophages, and primary dendritic cells. Inhibition of mTOR by rapamycin promoted production of proinflammatory cytokines via the transcription factor NF-kappaB but blocked the release of interleukin-10 via the transcription factor STAT3. Conversely, deletion of TSC2, the key negative regulator of mTOR, diminished NF-kappaB but enhanced STAT3 activity and reversed this proinflammatory cytokine shift. Rapamycin-hyperactivated monocytes displayed a strong T helper 1 (Th1) cell- and Th17 cell-polarizing potency. Inhibition of mTOR in vivo regulated the inflammatory response and protected genetically susceptible mice against lethal Listeria monocytogenes infection. These data identify the TSC2-mTOR pathway as a key regulator of innate immune homeostasis with broad clinical implications for infectious and autoimmune diseases, vaccination, cancer, and transplantation.

Article Info
Journal
Immunity
Abbr.
Immunity
Published
2008-12-15
Indexed
2008-10-29
Updated
2013-11-21
Language
English
Country/Region
United States
NLM ID
9432918
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