Apoptosis paves the detour path for CD8 T cell activation against intracellular bacteria
Florian Winau1, Stefan H E Kaufmann, Ulrich E Schaible
1Max-Planck-Institute for Infection Biology, Department of Immunology, Schumannstr. 21-22, D-10117 Berlin, Germany.
Abstract:
Intracellular bacteria such as Mycobacterium tuberculosis primarily infect macrophages. Within these host cells, the pathogens are confined to phagosomes and their antigens are secluded from the classical MHC I presentation pathway. Moreover, macrophages fail to express certain antigen presenting molecules like CD1 proteins. As a result of this intracellular lifestyle, the pathways for the induction of MHC I- and CD1-restricted CD8 T cells by such microorganisms remain elusive. Based on recent findings in tuberculosis and salmonellosis, we propose a new detour pathway for CD8 T cell activation against intracellular bacteria through apoptotic blebs from infected macrophages. Pathogen-derived antigens including proteins and lipids are delivered from infected cells to non-infected dendritic cells. Subsequently, these professional antigen presenting cells display microbial antigens through MHC I and CD1 to T cells. Thus, cross-priming mediated by apoptotic vesicles is not just a matter of antigen distribution, but an intrinsic immunological function due to the nature of phagosomally located intracellular bacteria. We consider infection-induced apoptosis the conditio sine qua non for antigen-specific CD8 T cell activation by phagosome-enclosed pathogens. This important new function of cell death in antibacterial immunity requires consideration for rational vaccine design.
Insights
Intracellular bacteria hide from immune cells. We propose a new pathway where infected cell fragments activate CD8 T cells, crucial for designing effective tuberculosis vaccines.
Area of Science:
- Immunology
- Microbiology
- Cell Biology
Background:
- Intracellular bacteria like Mycobacterium tuberculosis infect macrophages, evading classical immune presentation pathways.
- Antigens are sequestered within phagosomes, limiting MHC I and CD1 presentation to T cells.
- Macrophages may lack essential antigen-presenting molecules like CD1 proteins.
Purpose of the Study:
- To elucidate the mechanisms of CD8 T cell activation against intracellular bacteria.
- To propose a novel pathway for antigen presentation by phagosome-enclosed pathogens.
- To highlight the role of apoptosis in antibacterial immunity and vaccine development.
Main Methods:
- Review of recent findings in tuberculosis and salmonellosis.
- Hypothesizing a detour pathway involving apoptotic blebs from infected macrophages.
- Analysis of antigen transfer from infected to non-infected antigen-presenting cells.
Main Results:
- Pathogen antigens (proteins and lipids) are transferred via apoptotic blebs.
- Dendritic cells present these antigens via MHC I and CD1 to T cells.
- Cross-priming through apoptotic vesicles is an intrinsic immunological function.
Conclusions:
- Infection-induced apoptosis is essential for CD8 T cell activation against intracellular bacteria.
- Apoptotic blebs facilitate antigen presentation by professional antigen-presenting cells.
- This mechanism is critical for designing vaccines against phagosome-enclosed pathogens.
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