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Updated: Jun 21, 2025

Detection and Enrichment of Rare Antigen-specific B Cells for Analysis of Phenotype and Function
Published on: February 16, 2017
Method for B Cell Receptor Enrichment in Malignant B Cells
Puja Bhattacharyya1,2, Richard I Christopherson3, Kristen K Skarratt1,4
1Sydney Medical School Nepean, Faculty of Medicine and Health, The University of Sydney, Penrith, NSW 2750, Australia.
Insights
Researchers developed a new method to isolate the B cell receptor (BCR) complex for mass spectrometry analysis. This technique enables comprehensive study of BCR structure and interactions, advancing our understanding of adaptive immunity.
Area of Science:
- Immunology
- Proteomics
- Biochemistry
Background:
- B cells are crucial for adaptive immunity, with B cell receptor (BCR) activation initiating immune responses.
- Analyzing the BCR complex via mass spectrometry (MS) is difficult due to challenges in isolating this membrane-bound protein.
Purpose of the Study:
- To describe a novel method for enriching the B cell receptor (BCR) complex.
- To enable compatibility with mass spectrometry (MS) workflows for structural and interaction analysis.
Main Methods:
- Utilized Protein G pull-down on agarose beads with intermediary antibodies targeting BCR subcomponents (CD79a, CD79b, membrane immunoglobulin).
- Developed an MS-compatible enrichment strategy for the entire BCR complex.
Main Results:
- Successfully enriched the complete BCR complex using the described method.
- The technique is compatible with downstream proteomic studies, including MS analysis.
- This approach allows for the enrichment of all B cell receptor (BCR) isotypes, overcoming limitations of previous methods.
Conclusions:
- The developed method provides a robust approach for BCR complex enrichment.
- This technique facilitates advanced proteomic analysis of the BCR, crucial for understanding B cell function and immune responses.
- The ability to enrich all BCR isotypes broadens the scope for future research.
Abstract:
B cells are central to the adaptive immune response and provide long-lasting immunity after infection. B cell activation is mediated by the surface membrane-bound B cell receptor (BCR) following recognition of a specific antigen. The BCR has been challenging to analyse using mass spectrometry (MS) due to the difficulty of isolating and enriching this membrane-bound protein complex. There are approximately 120,000 BCRs on the B cell surface; however, depending on the B cell activation state, there may be hundreds-of-millions to billions of proteins in a B cell. Consequently, advanced proteomic techniques such as MS workflows that use purified proteins to yield structural and protein-interaction information have not been published for the BCR complex. This paper describes a method for enriching the BCR complex that is MS-compatible. The method involves a Protein G pull down on agarose beads using an intermediary antibody to each of the BCR complex subcomponents (CD79a, CD79b, and membrane immunoglobulin). The enrichment process is shown to pull down the entire BCR complex and has the advantage of being readily compatible with further proteomic study including MS analysis. Using intermediary antibodies has the potential to enrich all isotypes of the BCR, unlike previous methods described in the literature that use protein G-coated beads to directly pull down the membrane IgG (mIgG) but cannot be used for other mIg isotypes.
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