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Fam49b dampens TCR signal strength to regulate survival of positively selected thymocytes

View ORCID ProfileChan-Su Park, View ORCID ProfileJian Guan, Peter Rhee, Federico Gonzalez, View ORCID ProfileLaurent Coscoy, View ORCID ProfileEllen A. Robey, View ORCID ProfileNilabh Shastri, Scheherazade Sadegh-Nasseri
doi: https://doi.org/10.1101/2022.01.18.476719
Chan-Su Park
1Department of Pathology, The Johns Hopkins University School of Medicine, Baltimore, Maryland, USA
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  • For correspondence: cpark52@jh.edu
Jian Guan
1Department of Pathology, The Johns Hopkins University School of Medicine, Baltimore, Maryland, USA
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Peter Rhee
1Department of Pathology, The Johns Hopkins University School of Medicine, Baltimore, Maryland, USA
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Federico Gonzalez
2Department of Nutritional Sciences and Toxicology, University of California, Berkeley, California, USA
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Laurent Coscoy
3Department of Molecular and Cell Biology, University of California, Berkeley, California, USA
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Ellen A. Robey
3Department of Molecular and Cell Biology, University of California, Berkeley, California, USA
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  • For correspondence: cpark52@jh.edu
Nilabh Shastri
1Department of Pathology, The Johns Hopkins University School of Medicine, Baltimore, Maryland, USA
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Scheherazade Sadegh-Nasseri
1Department of Pathology, The Johns Hopkins University School of Medicine, Baltimore, Maryland, USA
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  • For correspondence: cpark52@jh.edu
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Abstract

The fate of developing T cells is determined by the strength of T cell receptor (TCR) signal they receive in the thymus. This process is finely regulated through tuning of positive and negative regulators in thymocytes. The Family with sequence similarity 49 member B (Fam49b) protein is a newly discovered negative regulator of TCR signaling that has been shown to suppress Rac-1 activity in vitro in cultured T cell lines. However, the contribution of Fam49b to thymic development of T cells is unknown. To investigate this important issue, we generated a novel mouse line deficient in Fam49b (Fam49b-KO). We observed that Fam49b-KO double positive (DP) thymocytes underwent excessive negative selection, whereas the positive selection stage was unaffected. This altered development process resulted in significant reductions in CD4 and CD8 single positive thymocytes as well as peripheral T cells. Interestingly, a large proportion of the TCRγδ+ and CD8αα+TCRαβ+ gut intraepithelial T lymphocytes were absent in Fam49b-KO mice. Our results demonstrate that Fam49b dampens thymocytes TCR signaling in order to escape negative selection during development, uncovering the function of Fam49b as a critical regulator of selection process to ensure normal thymocyte development.

Competing Interest Statement

The authors have declared no competing interest.

  • Abbreviations

    TCR
    T cell receptor
    Fam49a
    Family with sequence similarity 49 member A
    Fam49b
    Family with sequence similarity 49 member B
    DN
    double negative
    DP
    double positive
    SP
    single positive
    Rho-GTPases
    Rho family of small guanosine triphosphatases
    GEFs
    guanine nucleotide exchange factors
    GAPs
    GTPase-activating proteins
    IELs
    intraepithelial lymphocytes
    Treg
    cells Regulatory T cell
    iNKT cells
    invariant natural killer T cells
    APCs
    antigen presenting cells
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    Posted January 18, 2022.
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    Fam49b dampens TCR signal strength to regulate survival of positively selected thymocytes
    Chan-Su Park, Jian Guan, Peter Rhee, Federico Gonzalez, Laurent Coscoy, Ellen A. Robey, Nilabh Shastri, Scheherazade Sadegh-Nasseri
    bioRxiv 2022.01.18.476719; doi: https://doi.org/10.1101/2022.01.18.476719
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    Fam49b dampens TCR signal strength to regulate survival of positively selected thymocytes
    Chan-Su Park, Jian Guan, Peter Rhee, Federico Gonzalez, Laurent Coscoy, Ellen A. Robey, Nilabh Shastri, Scheherazade Sadegh-Nasseri
    bioRxiv 2022.01.18.476719; doi: https://doi.org/10.1101/2022.01.18.476719

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