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1.
PLoS Negl Trop Dis ; 15(12): e0010018, 2021 12.
Article in English | MEDLINE | ID: mdl-34914694

ABSTRACT

T cell receptors (TCRs) encode the history of antigenic challenge within an individual and have the potential to serve as molecular markers of infection. In addition to peptide antigens bound to highly polymorphic MHC molecules, T cells have also evolved to recognize bacterial lipids when bound to non-polymorphic CD1 molecules. One such subset, germline-encoded, mycolyl lipid-reactive (GEM) T cells, recognizes mycobacterial cell wall lipids and expresses a conserved TCR-ɑ chain that is shared among genetically unrelated individuals. We developed a quantitative PCR assay to determine expression of the GEM TCR-ɑ nucleotide sequence in human tissues and blood. This assay was validated on plasmids and T cell lines. We tested blood samples from South African subjects with or without tuberculin reactivity or with active tuberculosis disease. We were able to detect GEM TCR-ɑ above the limit of detection in 92% of donors but found no difference in GEM TCR-ɑ expression among the three groups after normalizing for total TCR-ɑ expression. In a cohort of leprosy patients from Nepal, we successfully detected GEM TCR-ɑ in 100% of skin biopsies with histologically confirmed tuberculoid and lepromatous leprosy. Thus, GEM T cells constitute part of the T cell repertoire in the skin. However, GEM TCR-ɑ expression was not different between leprosy patients and control subjects after normalization. Further, these results reveal the feasibility of developing a simple, field deployable molecular diagnostic based on mycobacterial lipid antigen-specific TCR sequences that are readily detectable in human tissues and blood independent of genetic background.


Subject(s)
Leprosy/diagnosis , Lipids/immunology , Molecular Diagnostic Techniques/methods , Mycobacterium/immunology , Receptors, Antigen, T-Cell, alpha-beta/immunology , Tuberculosis/diagnosis , Antigens, CD1/genetics , Antigens, CD1/immunology , Cell Wall/genetics , Cell Wall/immunology , Cohort Studies , Humans , Leprosy/blood , Leprosy/immunology , Leprosy/microbiology , Mycobacterium/genetics , Mycobacterium/isolation & purification , Nepal , Polymerase Chain Reaction , Receptors, Antigen, T-Cell, alpha-beta/blood , Receptors, Antigen, T-Cell, alpha-beta/genetics , South Africa , T-Lymphocytes/immunology , T-Lymphocytes/microbiology , Tuberculosis/blood , Tuberculosis/immunology , Tuberculosis/microbiology
2.
PLoS One ; 8(11): e81146, 2013.
Article in English | MEDLINE | ID: mdl-24363794

ABSTRACT

A key modulator of immune homeostasis, TGFß has an important role in the differentiation of regulatory T cells (Tregs) and IL-17-secreting T cells (Th17). How TGFß regulates these functionally opposing T cell subsets is not well understood. We determined that an ADAM family metalloprotease called ADAM12 is specifically and highly expressed in both Tregs and CCR6+ Th17 cells. ADAM12 is induced in vitro upon differentiation of naïve T cells to Th17 cells or IL-17-secreting Tregs. Remarkably, silencing ADAM12 expression in CCR6+ memory T cells enhances the production of Th17 cytokines, similar to suppressing TGFß signaling. Further, ADAM12 knockdown in naïve human T cells polarized towards Th17/Treg cells, or ectopically expressing RORC, greatly enhances IL-17-secreting cell differentiation, more potently then inhibiting TGFß signals. Together, our findings reveal a novel regulatory role for ADAM12 in Th17 cell differentiation or function and may have implications in regulating their aberrant responses during immune pathologies.


Subject(s)
ADAM Proteins/metabolism , Membrane Proteins/metabolism , Th17 Cells/metabolism , ADAM Proteins/genetics , ADAM12 Protein , CD4-Positive T-Lymphocytes/metabolism , Cell Differentiation/immunology , Cell Differentiation/physiology , Cells, Cultured , Humans , Interleukin-17/genetics , Interleukin-17/metabolism , Membrane Proteins/genetics , Receptors, CCR6/genetics , Receptors, CCR6/metabolism , Reverse Transcriptase Polymerase Chain Reaction , T-Lymphocyte Subsets/immunology , T-Lymphocyte Subsets/metabolism , T-Lymphocytes, Regulatory/immunology , T-Lymphocytes, Regulatory/metabolism
3.
J Immunol ; 190(11): 5506-15, 2013 Jun 01.
Article in English | MEDLINE | ID: mdl-23645881

ABSTRACT

GARP/LRRC32 was defined as a marker of activated human regulatory T cells (Tregs) that is responsible for surface localization of latent TGF-ß1. We find that GARP and latent TGF-ß1 are also found on mouse Tregs activated via TCR stimulation; however, in contrast to human Tregs, GARP is also expressed at a low level on resting Tregs. The expression of GARP can be upregulated on mouse Tregs by IL-2 or IL-4 exposure in the absence of TCR signaling. GARP is expressed at a low level on Tregs within the thymus, and Treg precursors from the thymus concomitantly express GARP and Foxp3 upon exposure to IL-2. The expression of GARP is independent of TGF-ß1 and TGF-ß1 loading into GARP and is independent of furin-mediated processing of pro-TGF-ß1 to latent TGF-ß1. Specific deletion of GARP in CD4(+) T cells results in lack of expression of latent TGF-ß1 on activated Tregs. GARP-deficient Tregs develop normally, are present in normal numbers in peripheral tissues, and are fully competent suppressors of the activation of conventional T cells in vitro. Activated Tregs expressing GARP/latent TGF-ß1 complexes are potent inducers of Th17 differentiation in the presence of exogenous IL-6 and inducers of Treg in the presence of IL-2. Induction of both Th17-producing cells and Tregs is caused preferentially by Tregs expressing the latent TGF-ß1/GARP complex on their cell surface rather than by secreted latent TGF-ß1.


Subject(s)
Cell Differentiation , Latent TGF-beta Binding Proteins/metabolism , Membrane Proteins/metabolism , T-Lymphocytes, Regulatory/cytology , T-Lymphocytes, Regulatory/metabolism , Th17 Cells/cytology , Th17 Cells/metabolism , Animals , Cell Differentiation/genetics , Cell Differentiation/immunology , Forkhead Transcription Factors/metabolism , Furin/metabolism , Gene Expression Regulation , Latent TGF-beta Binding Proteins/genetics , Membrane Proteins/genetics , Mice , Receptors, Antigen, T-Cell/metabolism , Thymus Gland/immunology , Thymus Gland/metabolism , Transforming Growth Factor beta1/metabolism
4.
J Immunol ; 190(10): 5057-64, 2013 May 15.
Article in English | MEDLINE | ID: mdl-23576681

ABSTRACT

The role of surface-bound TGF-ß on regulatory T cells (Tregs) and the mechanisms that mediate its functions are not well defined. We recently identified a cell-surface molecule called Glycoprotein A Repetitions Predominant (GARP), which is expressed specifically on activated Tregs and was found to bind latent TGF-ß and mediate a portion of Treg suppressive activity in vitro. In this article, we address the role of GARP in regulating Treg and conventional T cell development and immune suppression in vivo using a transgenic mouse expressing GARP on all T cells. We found that, despite forced expression of GARP on all T cells, stimulation through the TCR was required for efficient localization of GARP to the cell surface. In addition, IL-2 signals enhanced GARP cell surface expression specifically on Tregs. GARP-transgenic CD4(+) T cells and Tregs, especially those expressing higher levels of GARP, were significantly reduced in the periphery. Mature Tregs, but not conventional CD4(+) T cells, were also reduced in the thymus. CD4(+) T cell reduction was more pronounced within the effector/memory subset, especially as the mouse aged. In addition, GARP-overexpressing CD4(+) T cells stimulated through the TCR displayed reduced proliferative capacity, which was restored by inhibiting TGF-ß signaling. Furthermore, inhibiting TGF-ß signals greatly enhanced surface expression of GARP on Tregs and blocked the induction of Foxp3 in activated CD4(+) T cells overexpressing GARP. These findings suggest a role for GARP in natural and induced Treg development through activation of bound latent TGF-ß and signaling, which negatively regulates GARP expression on Tregs.


Subject(s)
Interleukin-2/metabolism , Membrane Proteins/metabolism , T-Lymphocytes, Regulatory/metabolism , Transforming Growth Factor beta/metabolism , Animals , Cell Proliferation , Cells, Cultured , Forkhead Transcription Factors/biosynthesis , Humans , Lymphocyte Activation/immunology , Mice , Mice, Inbred C57BL , Mice, Transgenic , Receptors, Antigen, T-Cell/immunology , Receptors, Antigen, T-Cell/metabolism , T-Lymphocytes, Regulatory/cytology , T-Lymphocytes, Regulatory/immunology , Thymus Gland/cytology
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