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Updated: Jun 28, 2025

Immunopeptidomics: Isolation of Mouse and Human MHC Class I- and II-Associated Peptides for Mass Spectrometry Analysis
Published on: October 15, 2021
Proximity-Based Labeling Identifies MHC Class II and CD37 as B Cell Receptor-Proximal Proteins with Immunological
Sean Hoeger1, Lisa A Drake1, James R Drake1
1Department of Immunology and Microbial Disease, Albany Medical College, Albany, NY.
Insights
Researchers identified new proteins interacting with the B cell receptor (BCR). The tetraspanin CD37 was found to modulate BCR signaling and endocytosis, impacting B cell activation and T cell help recruitment.
Area of Science:
- Immunology
- Cell Biology
- Molecular Biology
Background:
- The B cell receptor (BCR) is crucial for B cell activation, antigen processing, and presentation to T cells.
- BCR signaling and endocytosis are primarily driven by cytoplasmic tail motifs, but modulated by other cellular elements like CD20 and lipid microdomains.
Purpose of the Study:
- To identify novel proteins that interact with and modulate the function of the murine IgM B cell receptor (BCR).
Main Methods:
- Employed proximity-based biotinylation coupled with mass spectrometry to identify molecular neighbors of the BCR.
- Utilized CRISPR-based knockout of CD37 in a B cell line to assess its functional impact on BCR signaling and endocytosis.
Main Results:
- Identified MHC class II molecules, integrins, transporters, and membrane microdomain proteins as BCR neighbors.
- Discovered CD37, a tetraspanin protein, as a BCR neighbor, with its absence leading to heightened BCR signaling and slower endocytosis.
- Observed that CD37 knockout tempered the formation of peptide-class II complexes.
Conclusions:
- BCR molecular neighbors significantly influence membrane-mediated BCR functions.
- The tetraspanin CD37 is a novel modulator of BCR signaling, endocytosis, and antigen processing complex formation.
- Proximity-based labeling is an effective technique for discovering previously unknown BCR-interacting proteins.
Abstract:
The BCR allows for Ag-driven B cell activation and subsequent Ag endocytosis, processing, and presentation to recruit T cell help. Core drivers of BCR signaling and endocytosis are motifs within the receptor's cytoplasmic tail (primarily CD79). However, BCR function can be tuned by other proximal cellular elements, such as CD20 and membrane lipid microdomains. To identify additional proteins that could modulate BCR function, we used a proximity-based biotinylation technique paired with mass spectrometry to identify molecular neighbors of the murine IgM BCR. Those neighbors include MHC class II molecules, integrins, various transporters, and membrane microdomain proteins. Class II molecules, some of which are invariant chain-associated nascent class II, are a readily detected BCR neighbor. This finding is consistent with reports of BCR-class II association within intracellular compartments. The BCR is also in close proximity to multiple proteins involved in the formation of membrane microdomains, including CD37, raftlin, and Ig superfamily member 8. Known defects in T cell-dependent humoral immunity in CD37 knockout mice suggest a role for CD37 in BCR function. In line with this notion, CRISPR-based knockout of CD37 expression in a B cell line heightens BCR signaling, slows BCR endocytosis, and tempers formation of peptide-class II complexes. These results indicate that BCR molecular neighbors can impact membrane-mediated BCR functions. Overall, a proximity-based labeling technique allowed for identification of multiple previously unknown BCR molecular neighbors, including the tetraspanin protein CD37, which can modulate BCR function.
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