Abstract
Previously we have shown that transcription factor Foxp1 plays an essential role in maintaining naive T cell quiescence; in the absence of Foxp1, mature naive CD8(+) T cells proliferate in direct response to homeostatic cytokine IL-7. In this study, we report that the deletion of Foxp1 in naive CD8(+) T cells leads to enhanced activation of the PI3K/Akt/mammalian target of rapamycin signaling pathway and its downstream cell growth and metabolism targets in response to IL-7. We found that Foxp1 directly regulates PI3K interacting protein 1, a negative regulator of PI3K. Additionally, we found that deletion of Foxp1 in naive CD8(+) T cells results in increased expression levels of E2fs, the critical components for cell cycle progression and proliferation, in a manner that is not associated with increased phosphorylation of retinoblastoma protein. Taken together, our studies suggest that Foxp1 enforces naive CD8(+) T cell quiescence by simultaneously repressing key pathways in both cellular metabolism and cell cycle progression.
MeSH Terms
Animals
CD8-Positive T-Lymphocytes/cytology,drug effects,immunology,metabolism
Carrier Proteins/genetics,metabolism
Cell Cycle/physiology
Cell Proliferation
Forkhead Transcription Factors/deficiency,genetics,metabolism
Gene Expression Regulation
Homeostasis
Interleukin-7/immunology,metabolism,pharmacology
Intracellular Signaling Peptides and Proteins
Membrane Proteins
Phosphatidylinositol 3-Kinases/genetics,metabolism
Phosphorylation
Repressor Proteins/deficiency,genetics,metabolism
Retinoblastoma Protein/immunology,metabolism
Signal Transduction
TOR Serine-Threonine Kinases/metabolism
Chemicals
Carrier Proteins
Forkhead Transcription Factors
Foxp1 protein, mouse
Interleukin-7
Intracellular Signaling Peptides and Proteins
Membrane Proteins
Pik3ip1 protein, mouse
Repressor Proteins
Retinoblastoma Protein
mTOR protein, mouse
TOR Serine-Threonine Kinases
Authors & Affiliations
10 authors, click to expand affiliations / ORCID
Wei Hairong
Department of Microbiology, School of Medicine, University of Alabama at Birmingham, Birmingham, AL 35205; and.
Geng Jianlin
Department of Microbiology, School of Medicine, University of Alabama at Birmingham, Birmingham, AL 35205; and.
Shi Bi
Department of Microbiology, School of Medicine, University of Alabama at Birmingham, Birmingham, AL 35205; and.
Liu Zhenghui
ORCID
Department of Microbiology, School of Medicine, University of Alabama at Birmingham, Birmingham, AL 35205; and.
Wang Yin-Hu
Department of Microbiology, School of Medicine, University of Alabama at Birmingham, Birmingham, AL 35205; and.
Stevens Anna C
ORCID
Department of Microbiology, School of Medicine, University of Alabama at Birmingham, Birmingham, AL 35205; and.
Sprout Stephanie L
Department of Microbiology, School of Medicine, University of Alabama at Birmingham, Birmingham, AL 35205; and.
Yao Min
ORCID
Key Laboratory of Molecular Virology and Immunology, Institut Pasteur of Shanghai, Chinese Academy of Sciences, Shanghai 200031, China.
Wang Haikun
ORCID
Key Laboratory of Molecular Virology and Immunology, Institut Pasteur of Shanghai, Chinese Academy of Sciences, Shanghai 200031, China hkwang@ips.ac.cn huihu@uab.edu.
Hu Hui
Department of Microbiology, School of Medicine, University of Alabama at Birmingham, Birmingham, AL 35205; and hkwang@ips.ac.cn huihu@uab.edu.
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