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Updated: Aug 8, 2026

In vivo and in vitro Studies of Adaptor-clathrin Interaction
Published on: January 27, 2011
The B cell coreceptor CD22 associates with AP50, a clathrin-coated pit adapter protein, via tyrosine-dependent
BinuJoy John1, Brantley R Herrin, Chander Raman
1Department of Microbiology and Immunology, University of Texas Medical Branch, Galveston, TX 77555, USA.
Insights
The B cell coreceptor CD22 interacts with the AP-2 complex through specific tyrosine motifs, mediating its internalization. This mechanism is crucial for regulating B cell receptor signaling during development and differentiation.
Area of Science:
- Immunology
- Cell Biology
Background:
- The B cell coreceptor CD22 regulates B cell receptor (BCR) signaling.
- Surface expression of CD22 is modulated by ligand binding, potentially impacting BCR signaling thresholds during B cell development.
Purpose of the Study:
- To elucidate the physiological mechanism controlling CD22 expression.
- To identify the molecular interactions responsible for CD22 internalization.
Main Methods:
- Yeast two-hybrid analysis to identify protein interactions.
- Studies using transfectant Jurkat cell lines with wild-type and mutant CD22.
- Coprecipitation assays to confirm protein complex formation.
- Experiments involving B cell treatment with anti-Ig antibodies.
Main Results:
- CD22 interacts with AP50, a subunit of the AP-2 complex, via tyrosine-based internalization motifs.
- Tyrosine residues Tyr(843) and Tyr(863) in CD22's cytoplasmic tail are critical for AP-50 binding and CD22 internalization.
- Interaction with the AP-2 complex and subsequent internalization are essential for CD22's function.
- Ligand-mediated internalization of CD22 is blocked by intact anti-Ig antibodies or F(ab')(2) fragments.
Conclusions:
- CD22 internalization is dependent on its association with the AP-2 complex.
- Tyrosine-based motifs within CD22 mediate its interaction with the AP-2 complex, driving internalization.
- Understanding CD22 regulation is key to understanding B cell signaling modulation.
Abstract:
The B cell coreceptor CD22 plays an important role in regulating signal transduction via the B cell Ag receptor. Studies have shown that surface expression of CD22 can be modulated in response to binding of ligand (i.e., mAb). Thus, it is possible that alterations in the level of CD22 expression following binding of natural ligand(s) may affect its ability to modulate the Ag receptor signaling threshold at specific points during B cell development and differentiation. Therefore, it is important to delineate the physiologic mechanism by which CD22 expression is controlled. In the current study, yeast two-hybrid analysis was used to demonstrate that CD22 interacts with AP50, the medium chain subunit of the AP-2 complex, via tyrosine-based internalization motifs in its cytoplasmic domain. This interaction was further characterized using yeast two-hybrid analysis revealing that Tyr(843) and surrounding amino acids in the cytoplasmic tail of CD22 comprise the primary binding site for AP50. Subsequent studies using transfectant Jurkat cell lines expressing wild-type or mutant forms of CD22 demonstrated that either Tyr(843) or Tyr(863) is sufficient for mAb-mediated internalization of CD22 and that these motifs are involved in its interaction with the AP-2 complex, as determined by coprecipitation of alpha-adaptin. Finally, experiments were performed demonstrating that treatment of B cells with either intact anti-Ig Ab or F(ab')(2) blocks ligand-mediated internalization of CD22. In conclusion, these studies demonstrate that internalization of CD22 is dependent on its association with the AP-2 complex via tyrosine-based internalization motifs.
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