Related Experiment Videos
Phagocytic processing of antigens for presentation by class II major histocompatibility complex molecules
L Ramachandra1, E Noss, W H Boom
1Institute of Pathology, Case Western Reserve University, Cleveland, OH 44106-4943, USA.
Abstract:
Microbes and other particulate antigens (Ags) are internalized by phagocytosis and then reside in plasma membrane-derived phagosomes. The contribution of phagosomes to the degradation of Ags has long been appreciated. It has been unclear, however, whether peptides derived from these degraded antigens bind class II major histocompatibility complex (MHC-II) molecules within phagosomes or within endocytic compartments that receive Ag fragments from phagosomes. Recent experiments have demonstrated that phagosomes containing Ag-conjugated latex beads express a full complement of Ag-processing molecules, e.g. MHC-II molecules, invariant chain, H2-DM and proteases sufficient to degrade bead- associated Ag. These phagosomes mediate the formation of peptide-MHC-II complexes, which are transported to the cell surface and presented to T cells. Phagosomes acquire both newly synthesized and plasma membrane-derived MHC-II molecules, but the formation of peptide-MHC-II complexes in phagosomes primarily involves newly synthesized MHC-II molecules. The content and traffic of phagosomal proteins vary considerably with the type of Ag ingested. Pathogenic microbes can alter phagosome composition and function to reduce Ag processing. For example, Mycobacterium tuberculosis blocks the maturation of phagosomes and reduces the ability of infected cells to present exogenous soluble protein Ags.
Insights
Phagosomes can process antigens and form peptide-MHC-II complexes for T cell presentation. Pathogenic microbes can disrupt this process, hindering antigen presentation.
Area of Science:
- Immunology
- Cell Biology
- Antigen Processing
Background:
- Phagocytosis is key for internalizing antigens (Ags) into phagosomes.
- The precise location of peptide-MHC-II complex formation within phagosomes or endosomes was unclear.
Purpose of the Study:
- To investigate whether peptide-MHC-II complexes form within phagosomes.
- To understand the role of phagosomes in antigen presentation.
Main Methods:
- Utilized phagosomes containing antigen-conjugated latex beads.
- Analyzed the presence of antigen-processing molecules (MHC-II, invariant chain, H2-DM, proteases) within phagosomes.
- Tracked the acquisition of MHC-II molecules and formation of peptide-MHC-II complexes.
Main Results:
- Phagosomes with bead-associated Ags contain necessary processing machinery.
- Peptide-MHC-II complex formation occurs within phagosomes.
- Newly synthesized MHC-II molecules are primarily involved in complex formation.
- Pathogenic microbes like Mycobacterium tuberculosis can impair phagosome function and antigen presentation.
Conclusions:
- Phagosomes are active sites for antigen processing and peptide-MHC-II complex formation.
- Newly synthesized MHC-II molecules are crucial for this process within phagosomes.
- Pathogens can evade immune detection by manipulating phagosome function.