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CEACAM1 dynamics during neisseria gonorrhoeae suppression of CD4+ T lymphocyte activation
Hannah S W Lee1, Mario A Ostrowski, Scott D Gray-Owen
1Department of Molecular Genetics, University of Toronto, Toronto, Ontario, Canada.
Abstract:
Neisseria gonorrhoeae colony opacity-associated (Opa) proteins bind to human carcinoembryonic antigen cellular adhesion molecules (CEACAM) found on host cells including T lymphocytes. Opa binding to CEACAM1 suppresses the activation of CD4(+) T cells in response to a variety of stimuli. In this study, we use primary human CD4(+) T cells isolated from peripheral blood to define the molecular events occurring subsequent to Opa-CEACAM1 binding. We establish that, in contrast to other cell types, T cells do not engulf N. gonorrhoeae upon CEACAM1 binding. Instead, the bacteria recruit CEACAM1 from intracellular stores and maintain it on the T cell surface. Upon TCR ligation, the co-engaged CEACAM1 becomes phosphorylated on tyrosine residues within the ITIMs apparent in the cytoplasmic domain. This allows the recruitment and subsequent activation of the src homology domain 2-containing tyrosine phosphatases SHP-1 and SHP-2 at the site of bacterial attachment, which prevents the normal tyrosine phosphorylation of the CD3zeta-chain and ZAP-70 kinase in response to TCR engagement. Combined, this dynamic response allows the bacteria to effectively harness the coinhibitory function of CEACAM1 to suppress the adaptive immune response at its earliest step.
Insights
Neisseria gonorrhoeae Opa proteins bind to T cells, preventing immune responses. The bacteria recruit CEACAM1, which inhibits T cell activation by blocking key signaling molecules.
Area of Science:
- Microbiology
- Immunology
- Cell Biology
Background:
- Neisseria gonorrhoeae uses Opa proteins to interact with host cells.
- Opa binding to CEACAM1 on T cells suppresses their activation.
Purpose of the Study:
- To elucidate the molecular mechanisms by which Opa-CEACAM1 binding suppresses CD4(+) T cell activation.
- To investigate the dynamic cellular events following bacterial interaction with T cells.
Main Methods:
- Primary human CD4(+) T cells were isolated from peripheral blood.
- Analysis of T cell surface protein recruitment and phosphorylation upon bacterial interaction.
- Investigated the role of CEACAM1, SHP-1, and SHP-2 in T cell receptor signaling.
Main Results:
- T cells do not internalize Neisseria gonorrhoeae; instead, CEACAM1 is recruited to the T cell surface.
- TCR ligation leads to CEACAM1 phosphorylation and recruitment of phosphatases SHP-1 and SHP-2.
- This process inhibits the phosphorylation of CD3zeta-chain and ZAP-70 kinase, crucial for T cell activation.
Conclusions:
- Neisseria gonorrhoeae exploits CEACAM1 coinhibitory signaling to suppress T cell activation at the initial step.
- The bacteria actively manipulate host cell machinery to evade adaptive immunity.
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