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Published on: March 22, 2012
Dynamics of major histocompatibility complex class II compartments during B cell receptor-mediated cell activation
Danielle Lankar1, Hélène Vincent-Schneider, Volker Briken
1Institut National de la Sante et de la Recherche Medicale U520 INSERM, Institut Curie, 12 rue Lhomond, 75005 Paris, France.
Insights
B cell receptor (BcR) stimulation forms temporary antigen-processing compartments. This enables B cells to present antigens effectively, differentiating into plasmocytes and enhancing immune responses.
Area of Science:
- Immunology
- Cell Biology
Background:
- B cell receptor (BcR) recognition initiates B lymphocyte differentiation.
- Efficient antigen presentation via MHC class II is crucial for B cell function.
Purpose of the Study:
- To investigate the subcellular mechanisms of antigen presentation following BcR engagement.
- To understand the dynamics of MHC class II and H2-M molecules during B cell activation.
Main Methods:
- Analysis of subcellular localization of MHC class II and H2-M molecules in B cells.
- Investigating the role of cathepsin S activity in antigen processing.
- Tracking the formation of multivesicular bodies (MVBs) after BcR stimulation.
Main Results:
- MHC class II is found on the cell surface and in tubulovesicular structures in quiescent B cells.
- BcR stimulation leads to transient MHC class II accumulation in MVBs, with H2-M recruitment.
- Cathepsin S activity regulates the processing of invariant chain-MHC class II complexes within MVBs.
Conclusions:
- BcR engagement triggers the formation of specialized antigen-processing compartments.
- These compartments facilitate the maturation and surface presentation of MHC class II-peptide complexes.
- This process enables antigen-specific B cells to act as effective antigen-presenting cells.
Abstract:
Antigen recognition by clonotypic B cell receptor (BcR) is the first step of B lymphocytes differentiation into plasmocytes. This B cell function is dependent on efficient major histocompatibility complex (MHC) class II-restricted presentation of BcR-bound antigens. In this work, we analyzed the subcellular mechanisms underlying antigen presentation after BcR engagement on B cells. In quiescent B cells, we found that MHC class II molecules mostly accumulated at the cell surface and in an intracellular pool of tubulovesicular structures, whereas H2-M molecules were mostly detected in distinct lysosomal compartments devoid of MHC class II. BcR stimulation induced the transient intracellular accumulation of MHC class II molecules in newly formed multivesicular bodies (MVBs), to which H2-M was recruited. The reversible downregulation of cathepsin S activity led to the transient accumulation of invariant chain-MHC class II complexes in MVBs. A few hours after BcR engagement, cathepsin S activity increased, the p10 invariant chain disappeared, and MHC class II-peptide complexes arrived at the plasma membrane. Thus, BcR engagement induced the transient formation of antigen-processing compartments, enabling antigen-specific B cells to become effective antigen-presenting cells.
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