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Published on: May 27, 2011
Human CD8+ T cell clone regulates autologous CD4+ myelin basic protein specific T cells
Y K Chou1, P Henderikx, R E Jones
1Department of Neuroimmunology Research, Veterans Affairs Medical Center, Portland, OR 97201.
Insights
CD8+ T cell clones specific for myelin basic protein (MBP) were identified. One clone, C9, inhibited autologous CD4+ T cell responses to MBP but not to other antigens, suggesting antigen-specific regulation in T cell immunity.
Area of Science:
- Immunology
- T cell biology
- Autoimmunity
Background:
- CD4+ T cells are key drivers of autoimmune responses, including those targeting myelin basic protein (MBP).
- The role of CD8+ T cells in regulating autoimmune responses is complex and not fully understood.
Purpose of the Study:
- To investigate the functional characteristics of CD8+ T cell clones co-isolated with MBP-specific CD4+ T cell clones.
- To determine if CD8+ T cells can modulate antigen-specific T cell responses.
Main Methods:
- Isolation and characterization of human CD8+ and CD4+ T cell clones.
- Antigen stimulation assays using MBP and peptides.
- Phenotypic analysis (TCR, surface markers) and functional assays (proliferation, cytotoxicity).
Main Results:
- Two CD8+ T cell clones (V beta 17+) were isolated alongside MBP-specific CD4+ T cell clones (V beta 14+).
- One CD8+ clone (C9) specifically inhibited the proliferation of autologous MBP-specific CD4+ T cells but not HSV-specific CD4+ T cells.
- C9 exhibited mild cytolytic activity against autologous MBP-specific CD4+ T cells, blocked by anti-MHC class I antibodies.
Conclusions:
- CD8+ T cells can exert antigen-specific regulatory functions on CD4+ T cell responses.
- These findings suggest a potential role for CD8+ T cells in controlling autoimmune reactions, such as those in multiple sclerosis.
Abstract:
Normal human CD8+ T cell clones were co-isolated from the same culture wells as CD4+ T effector cell clones specific for myelin basic protein (MBP). Microcultures from which the CD8+ clones were isolated initially proliferated weakly to whole MBP and to an MBP peptide spanning residues 90-170. This pattern of response was similar to strongly proliferating wells that yielded CD4+ T cell clones specific for the 90-170 peptide. After repeated stimulation, however, no response to MBP or MBP 90-170 was detected, even though the number of cells increased after stimulation. Phenotyping and TCR analyses revealed the presence of two CD8+, CD4-, IL-2R+ T cell isolates that expressed a single V beta gene (V beta 17) that differed from the CD4+ isolates that uniformly expressed V beta 14. One of these CD8+ clones (C9) inhibited the antigen-driven proliferation of an autologous MBP 90-170 reactive clone but not an autologous clone specific for Herpes simplex virus (HSV), without affecting MHC non-restricted mitogen responses of the same clones. Moreover, C9 did not inhibit heterologous CD4+ T cell clones specific for MBP 1-38 or 90-170. A culture supernatant of the CD8+ clone showed the same pattern but lower levels of inhibition. C9 had mild cytolytic activity when incubated at high ratios with an autologous MBP-specific CD4+ clone. Lysis was blocked completely by anti-MHC class I antibodies, but not by anti-MHC II antibodies.(ABSTRACT TRUNCATED AT 250 WORDS)
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