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Phenotypic and Functional Analysis of Activated Regulatory T Cells Isolated from Chronic Lymphocytic Choriomeningitis Virus-infected Mice
Published on: June 22, 2016
Functional abnormalities of CD8+ T cells define a unique subset of patients with common variable immunodeficiency
J S Jaffe1, W Strober, M C Sneller
1Mucosal Immunity Section, National Institute of Allergy and Infectious Diseases, National Institutes of Health, Bethesda, MD.
Insights
Patients with common variable immunodeficiency (CVI) and a low CD4/CD8 ratio have abnormal CD8+ T cells. These cells show increased cytotoxicity and suppressor activity, potentially impacting lymphoid function in CVI disease.
Area of Science:
- Immunology
- Cell Biology
Background:
- Common variable immunodeficiency (CVI) is characterized by hypogammaglobulinemia.
- A subset of CVI patients (CVI4/8low) presents with a distinct T-cell phenotype: a low CD4/CD8 ratio and increased CD8+ T cells.
- The functional and phenotypic characteristics of these abnormal CD8+ T cells in CVI4/8low patients require further elucidation.
Purpose of the Study:
- To investigate the phenotypic and functional properties of purified T-cell subsets in CVI4/8low patients.
- To characterize the specific abnormalities in CD8+ T cells, including proliferation, cytokine production, cytotoxicity, and suppressor activity.
- To evaluate the role of these abnormal CD8+ T cells in the pathogenesis of hypogammaglobulinemia in CVI.
Main Methods:
- Purification of CD4+ and CD8+ T-cell subsets from CVI4/8low patients and healthy controls.
- Phenotypic analysis using flow cytometry (HLA-DR, CD57, CD45RA).
- Functional assays including T-cell proliferation, cytokine production (IL-2, IFN-γ, IL-5, IL-4), cytotoxic T-lymphocyte activity, and suppressor assays on B cells.
Main Results:
- CD8+ T cells from CVI4/8low patients displayed increased HLA-DR and CD57, and decreased CD45RA expression compared to controls.
- Patient CD8+ T cells showed reduced proliferation, c-myc expression, and IL-2 production, but elevated IFN-γ and IL-5 secretion upon stimulation.
- Enhanced cytotoxic and suppressor activity of CD8+ T cells was observed, with suppression of IgG production in B cells, though B cells from some patients had intrinsic defects in Ig production.
Conclusions:
- CD8+ T cells in CVI4/8low patients exhibit a distinct abnormal phenotype and functional profile, characterized by enhanced cytotoxic and suppressor functions.
- The data suggest that while direct CD8+ T-cell suppression of B-cell differentiation may not be the primary cause of hypogammaglobulinemia in most CVI4/8low patients, these abnormal CD8+ T cells may contribute to lymphoid dysfunction.
- These findings help distinguish CVI4/8low patients and highlight potential subtle roles of aberrant CD8+ T cells in CVI pathogenesis.
Abstract:
A substantial subgroup of patients with common variable immunodeficiency (CVI) exhibit an abnormal T-cell phenotype characterized by a low CD4/CD8 ratio associated with a significant increase in the absolute number of CD8+ T cells (CVI4/8low patients). In the present study, we examined the phenotypic and functional properties of purified T-cell subsets in this group of CVI patients. CD8+ T cells from CVI4/8low patients manifested increased expression of HLA-DR and CD57 and decreased expression of CD45RA as compared with CD8+ T cells from normal controls. When stimulated with anti-CD3 and phorbol 12-myristate 13-acetate, purified patient CD8+ T cells exhibited significantly decreased proliferation, c-myc expression, and interleukin-2 (IL-2) production compared with that of normal CD8+ T cells. Nevertheless, mitogen-activated patient CD8+ T cells secreted elevated amounts of gamma-interferon and IL-5 and normal amounts of IL-4. This abnormal pattern of proliferation and cytokine production was limited to the CD8+ T-cell subset as CD4+ T cells from these patients exhibited normal proliferation and cytokine production. In further functional studies, purified CD8+ T cells from CVI4/8low patients manifested increased cytotoxic T-lymphocyte activity and suppressor activity, as compared with normal CD8+ T cells, when they were tested in (1) an anti-CD3 "redirected" cytotoxicity assay and (2) a suppressor assay consisting of CD8+ T cells and Staphylococcus aureus Cowan I (SAC) plus IL-2-stimulated normal (allogeneic) B cells. In the latter case, patient CD8+ T cells suppressed IgG production, but not IgM production. Finally, in studies to evaluate the role of patient CD8+ T cells in the pathogenesis of hypogammaglobulinemia, we determined the capacity of SAC and IL-2 to induce Ig production in highly purified patient B cells, ie, in the absence of patient CD8+ T cells. We found that, whereas B cells from one patient produced normal amounts of IgG, B cells from three patients were unable to produce normal amounts of IgG under these conditions. These data establish the phenotypic and functional characteristics of CD8+ T cells in CVI4/8low and clearly distinguish CVI4/8low patients from other patients with this syndrome. The data do not support the contention that hypogammaglobulinemia in CVI4/8low patients is due to a direct effect of CD8+ T cells on terminal B-cell differentiation, except in the occasional patient. The abnormal CD8+ T cells may, nevertheless, have more subtle effects of lymphoid function that play a role in disease pathogenesis.
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