BCAP links IL-1R to the PI3K-mTOR pathway and regulates pathogenic Th17 cell differentiation
BCAP links IL-1R to the PI3K-mTOR pathway and regulates pathogenic Th17 cell differentiation
The toll-like receptor (TLR) and interleukin (IL)-1 family of receptors share several signaling components, including the most upstream adapter, MyD88. We previously reported the discovery of B cell adapter for phosphoinositide 3-kinase (BCAP) as a novel toll-IL-1 receptor homology domain-containing adapter that regulates inflammatory responses downstream of TLR signaling. Here we find that BCAP plays a critical role downstream of both IL-1 and IL-18 receptors to regulate T helper (Th) 17 and Th1 cell differentiation, respectively. Absence of T cell intrinsic BCAP did not alter development of naturally arising Th1 and Th17 lineages but led to defects in differentiation to pathogenic Th17 lineage cells. Consequently, mice that lack BCAP in T cells had reduced susceptibility to experimental autoimmune encephalomyelitis. More importantly, we found that BCAP is critical for IL-1R-induced phosphoinositide 3-kinase-Akt-mechanistic target of rapamycin (mTOR) activation, and minimal inhibition of mTOR completely abrogated IL-1β-induced differentiation of pathogenic Th17 cells, mimicking BCAP deficiency. This study establishes BCAP as a critical link between IL-1R and the metabolic status of activated T cells that ultimately regulates the differentiation of inflammatory Th17 cells.
Journal Article
2413-2428
Deason, Krystin
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Troutman, Ty Dale
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Jain, Aakanksha
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Challa, Dilip K
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Mandraju, Rajakumar
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Brewer, Travis
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Ward, E Sally
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Pasare, Chandrashekhar
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3 September 2018
Deason, Krystin
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Troutman, Ty Dale
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Jain, Aakanksha
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Challa, Dilip K
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Mandraju, Rajakumar
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Brewer, Travis
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Ward, E Sally
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Pasare, Chandrashekhar
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Deason, Krystin, Troutman, Ty Dale, Jain, Aakanksha, Challa, Dilip K, Mandraju, Rajakumar, Brewer, Travis, Ward, E Sally and Pasare, Chandrashekhar
(2018)
BCAP links IL-1R to the PI3K-mTOR pathway and regulates pathogenic Th17 cell differentiation.
The Journal of Experimental Medicine, 215 (9), .
(doi:10.1084/jem.20171810).
Abstract
The toll-like receptor (TLR) and interleukin (IL)-1 family of receptors share several signaling components, including the most upstream adapter, MyD88. We previously reported the discovery of B cell adapter for phosphoinositide 3-kinase (BCAP) as a novel toll-IL-1 receptor homology domain-containing adapter that regulates inflammatory responses downstream of TLR signaling. Here we find that BCAP plays a critical role downstream of both IL-1 and IL-18 receptors to regulate T helper (Th) 17 and Th1 cell differentiation, respectively. Absence of T cell intrinsic BCAP did not alter development of naturally arising Th1 and Th17 lineages but led to defects in differentiation to pathogenic Th17 lineage cells. Consequently, mice that lack BCAP in T cells had reduced susceptibility to experimental autoimmune encephalomyelitis. More importantly, we found that BCAP is critical for IL-1R-induced phosphoinositide 3-kinase-Akt-mechanistic target of rapamycin (mTOR) activation, and minimal inhibition of mTOR completely abrogated IL-1β-induced differentiation of pathogenic Th17 cells, mimicking BCAP deficiency. This study establishes BCAP as a critical link between IL-1R and the metabolic status of activated T cells that ultimately regulates the differentiation of inflammatory Th17 cells.
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jem.20171810.full
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jem.20171810.full
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Accepted/In Press date: 17 April 2018
e-pub ahead of print date: 9 August 2018
Published date: 3 September 2018
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Journal Article
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Local EPrints ID: 423814
URI: http://eprints.soton.ac.uk/id/eprint/423814
ISSN: 0022-1007
PURE UUID: 40cb378a-e6ea-4e43-a4f8-916fdb5d0861
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Date deposited: 02 Oct 2018 16:30
Last modified: 16 Mar 2024 07:08
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Author:
Krystin Deason
Author:
Ty Dale Troutman
Author:
Aakanksha Jain
Author:
Dilip K Challa
Author:
Rajakumar Mandraju
Author:
Travis Brewer
Author:
Chandrashekhar Pasare
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