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Purification of the Membrane Compartment for Endoplasmic Reticulum-associated Degradation of Exogenous Antigens in Cross-presentation
Published on: August 21, 2017
Signaling through the B cell antigen receptor regulates discrete steps in the antigen processing pathway
N M Wagle1, J H Kim, S K Pierce
1Department of Biochemistry, Molecular Biology and Cell Biology, Northwestern University, Evanston, Illinois 60208, USA.
Insights
B cell antigen receptor (BCR) cross-linking enhances antigen processing by accelerating BCR trafficking and degradation. BCR signaling pathways are crucial for this enhanced antigen processing, regulating specific intracellular steps.
Area of Science:
- Immunology
- Cell Biology
- Molecular Biology
Background:
- The B cell antigen receptor (BCR) binds antigens and initiates B cell signaling and antigen processing.
- BCR signaling is known to regulate antigen processing, but the specific mechanisms are not fully understood.
Purpose of the Study:
- To investigate the role of BCR signaling cascades in regulating antigen processing following BCR cross-linking.
- To determine how BCR signaling affects the trafficking and degradation of the BCR and bound antigen.
Main Methods:
- Utilized subcellular fractionation to analyze BCR trafficking.
- Employed protein kinase inhibitors (Genistein, Chelerythrine) to block BCR signaling.
- Quantified BCR and antigen internalization, trafficking to the MHC class II peptide-loading compartment (IIPLC), and degradation rates.
Main Results:
- BCR cross-linking accelerates BCR and antigen trafficking to the IIPLC and enhances their degradation.
- Protein kinase inhibitors significantly reduced BCR-enhanced antigen processing, trafficking to the IIPLC, and degradation.
- Kinase inhibitors had minimal impact on BCR and antigen internalization rates.
- BCR cross-linking did not affect the trafficking of newly synthesized class II molecules, indicating a specific regulatory role.
Conclusions:
- BCR signaling pathways play a critical role in regulating discrete steps of intracellular antigen processing.
- The signaling function of the BCR is essential for the accelerated trafficking and degradation of antigens and the BCR itself.
- These findings elucidate a key mechanism by which B cells enhance antigen presentation upon activation.
Abstract:
Antigen processing in B cells is initiated by antigen binding to the surface B cell antigen receptor (BCR). The BCR is a signaling receptor which also functions to endocytose bound antigen for subsequent intracellular processing and presentation with class II molecules. Previously, using subcellular fractionation, we showed that although the surface BCR constitutively traffics from the cell surface to the class II peptide-loading compartment (IIPLC), cross-linking the BCR regulates trafficking, resulting in a more rapid movement of the BCR to the IIPLC (Song et al., 1995, J. Immunol. 155, 4255). The rate of degradation of both the BCR and the bound antigen was also accelerated following BCR cross-linking. Here we provide evidence that the effect of cross-linking the BCR on antigen processing is in part dependent on signal cascades initiated by the BCR. We show that the protein kinase inhibitors Genistein and Chelerythrine, which block BCR signaling, reduce BCR-enhanced antigen processing in a dose-dependent manner. The kinase inhibitors have a small effect on the rate of internalization of the BCR and antigen following BCR cross-linking and significantly decrease the accelerated trafficking to the IIPLC. The increased rate of degradation of the BCR and antigen induced by BCR cross-linking is also decreased by the kinase inhibitors. BCR signaling does not appear to have a global effect on intracellular membrane trafficking as cross-linking the BCR did not alter the rate of trafficking of newly synthesized class II molecules to the IIPLC. Thus, the signaling function of the BCR appears to play a significant role in regulating discrete steps in the intracellular antigen processing pathway.
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