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The innate immune kinase TBK1 directly increases mTORC2 activity and downstream signaling to Akt

TBK1 responds to microbes to initiate cellular responses critical for host innate immune defense. We found previously that TBK1 phosphorylates mTOR (mechanistic target of rapamycin) on S2159 to increase mTOR complex 1 (mTORC1) signaling in response to the growth factor EGF and the viral dsRNA mimeti...

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Autores principales: Tooley, Aaron Seth, Kazyken, Dubek, Bodur, Cagri, Gonzalez, Ian E., Fingar, Diane C.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Society for Biochemistry and Molecular Biology 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8342794/
https://www.ncbi.nlm.nih.gov/pubmed/34245780
http://dx.doi.org/10.1016/j.jbc.2021.100942
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author Tooley, Aaron Seth
Kazyken, Dubek
Bodur, Cagri
Gonzalez, Ian E.
Fingar, Diane C.
author_facet Tooley, Aaron Seth
Kazyken, Dubek
Bodur, Cagri
Gonzalez, Ian E.
Fingar, Diane C.
author_sort Tooley, Aaron Seth
collection PubMed
description TBK1 responds to microbes to initiate cellular responses critical for host innate immune defense. We found previously that TBK1 phosphorylates mTOR (mechanistic target of rapamycin) on S2159 to increase mTOR complex 1 (mTORC1) signaling in response to the growth factor EGF and the viral dsRNA mimetic poly(I:C). mTORC1 and the less well studied mTORC2 respond to diverse cues to control cellular metabolism, proliferation, and survival. Although TBK1 has been linked to Akt phosphorylation, a direct relationship between TBK1 and mTORC2, an Akt kinase, has not been described. By studying MEFs lacking TBK1, as well as MEFs, macrophages, and mice bearing an Mtor S2159A knock-in allele (Mtor(A/A)) using in vitro kinase assays and cell-based approaches, we demonstrate here that TBK1 activates mTOR complex 2 (mTORC2) directly to increase Akt phosphorylation. We find that TBK1 and mTOR S2159 phosphorylation promotes mTOR-dependent phosphorylation of Akt in response to several growth factors and poly(I:C). Mechanistically, TBK1 coimmunoprecipitates with mTORC2 and phosphorylates mTOR S2159 within mTORC2 in cells. Kinase assays demonstrate that TBK1 and mTOR S2159 phosphorylation increase mTORC2 intrinsic catalytic activity. Growth factors failed to activate TBK1 or increase mTOR S2159 phosphorylation in MEFs. Thus, basal TBK1 activity cooperates with growth factors in parallel to increase mTORC2 (and mTORC1) signaling. Collectively, these results reveal cross talk between TBK1 and mTOR, key regulatory nodes within two major signaling networks. As TBK1 and mTOR contribute to tumorigenesis and metabolic disorders, these kinases may work together in a direct manner in a variety of physiological and pathological settings.
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spelling pubmed-83427942021-08-11 The innate immune kinase TBK1 directly increases mTORC2 activity and downstream signaling to Akt Tooley, Aaron Seth Kazyken, Dubek Bodur, Cagri Gonzalez, Ian E. Fingar, Diane C. J Biol Chem Research Article TBK1 responds to microbes to initiate cellular responses critical for host innate immune defense. We found previously that TBK1 phosphorylates mTOR (mechanistic target of rapamycin) on S2159 to increase mTOR complex 1 (mTORC1) signaling in response to the growth factor EGF and the viral dsRNA mimetic poly(I:C). mTORC1 and the less well studied mTORC2 respond to diverse cues to control cellular metabolism, proliferation, and survival. Although TBK1 has been linked to Akt phosphorylation, a direct relationship between TBK1 and mTORC2, an Akt kinase, has not been described. By studying MEFs lacking TBK1, as well as MEFs, macrophages, and mice bearing an Mtor S2159A knock-in allele (Mtor(A/A)) using in vitro kinase assays and cell-based approaches, we demonstrate here that TBK1 activates mTOR complex 2 (mTORC2) directly to increase Akt phosphorylation. We find that TBK1 and mTOR S2159 phosphorylation promotes mTOR-dependent phosphorylation of Akt in response to several growth factors and poly(I:C). Mechanistically, TBK1 coimmunoprecipitates with mTORC2 and phosphorylates mTOR S2159 within mTORC2 in cells. Kinase assays demonstrate that TBK1 and mTOR S2159 phosphorylation increase mTORC2 intrinsic catalytic activity. Growth factors failed to activate TBK1 or increase mTOR S2159 phosphorylation in MEFs. Thus, basal TBK1 activity cooperates with growth factors in parallel to increase mTORC2 (and mTORC1) signaling. Collectively, these results reveal cross talk between TBK1 and mTOR, key regulatory nodes within two major signaling networks. As TBK1 and mTOR contribute to tumorigenesis and metabolic disorders, these kinases may work together in a direct manner in a variety of physiological and pathological settings. American Society for Biochemistry and Molecular Biology 2021-07-08 /pmc/articles/PMC8342794/ /pubmed/34245780 http://dx.doi.org/10.1016/j.jbc.2021.100942 Text en © 2021 The Authors https://creativecommons.org/licenses/by/4.0/This is an open access article under the CC BY license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Research Article
Tooley, Aaron Seth
Kazyken, Dubek
Bodur, Cagri
Gonzalez, Ian E.
Fingar, Diane C.
The innate immune kinase TBK1 directly increases mTORC2 activity and downstream signaling to Akt
title The innate immune kinase TBK1 directly increases mTORC2 activity and downstream signaling to Akt
title_full The innate immune kinase TBK1 directly increases mTORC2 activity and downstream signaling to Akt
title_fullStr The innate immune kinase TBK1 directly increases mTORC2 activity and downstream signaling to Akt
title_full_unstemmed The innate immune kinase TBK1 directly increases mTORC2 activity and downstream signaling to Akt
title_short The innate immune kinase TBK1 directly increases mTORC2 activity and downstream signaling to Akt
title_sort innate immune kinase tbk1 directly increases mtorc2 activity and downstream signaling to akt
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8342794/
https://www.ncbi.nlm.nih.gov/pubmed/34245780
http://dx.doi.org/10.1016/j.jbc.2021.100942
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