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Published on: April 9, 2018
Actin-binding protein 1 regulates B cell receptor-mediated antigen processing and presentation in response to B cell
Olusegun O Onabajo1, Margaret K Seeley, Amruta Kale
1Department of Cell Biology and Molecular Genetics, University of Maryland, College Park, MD 20742, USA.
Insights
Actin-binding protein 1 (Abp1) is crucial for B cell receptor (BCR) signaling and antigen processing. Abp1 links BCR pathways to the actin cytoskeleton, facilitating antigen internalization and presentation for B cell activation.
Area of Science:
- Immunology
- Cell Biology
- Biochemistry
Background:
- The B cell receptor (BCR) is essential for B cell activation, mediating both signal transduction and antigen (Ag) transport.
- BCR signaling regulates Ag processing and presentation, critical for adaptive immunity.
- The actin cytoskeleton plays a vital role in BCR-mediated Ag internalization and processing.
Purpose of the Study:
- To investigate the role of actin-binding protein 1 (Abp1) in BCR signaling and Ag processing.
- To elucidate the molecular mechanisms by which Abp1 couples BCR pathways with the actin cytoskeleton.
Main Methods:
- Gene knockout and overexpression of Abp1 and its domains.
- Analysis of BCR-mediated Ag internalization, transport, processing, and presentation.
- Immunoprecipitation and co-localization studies to assess protein interactions and cellular localization.
Main Results:
- Abp1 acts as an adaptor protein linking BCR signaling to the actin cytoskeleton.
- Abp1 deficiency or altered Abp1 function impairs BCR-mediated Ag internalization and subsequent processing.
- BCR activation induces Abp1 phosphorylation and its co-localization with dynamin 2 at the plasma membrane, dependent on actin and tyrosine phosphorylation sites.
Conclusions:
- Abp1 is a key regulator of BCR-mediated Ag processing, facilitating Ag internalization and presentation.
- Abp1's function is modulated by BCR-induced phosphorylation and actin cytoskeleton dynamics.
- Abp1 interacts with dynamin 2, integrating actin cytoskeleton and signaling pathways for efficient Ag processing.
Abstract:
The BCR serves as both signal transducer and Ag transporter. Binding of Ags to the BCR induces signaling cascades and Ag processing and presentation, two essential cellular events for B cell activation. BCR-initiated signaling increases BCR-mediated Ag-processing efficiency by increasing the rate and specificity of Ag transport. Previous studies showed a critical role for the actin cytoskeleton in these two processes. In this study, we found that actin-binding protein 1 (Abp1/HIP-55/SH3P7) functioned as an actin-binding adaptor protein, coupling BCR signaling and Ag-processing pathways with the actin cytoskeleton. Gene knockout of Abp1 and overexpression of the Src homology 3 domain of Abp1 inhibited BCR-mediated Ag internalization, consequently reducing the rate of Ag transport to processing compartments and the efficiency of BCR-mediated Ag processing and presentation. BCR activation induced tyrosine phosphorylation of Abp1 and translocation of both Abp1 and dynamin 2 from the cytoplasm to plasma membrane, where they colocalized with the BCR and cortical F-actin. Mutations of the two tyrosine phosphorylation sites of Abp1 and depolymerization of the actin cytoskeleton interfered with BCR-induced Abp1 recruitment to the plasma membrane. The inhibitory effect of a dynamin proline-rich domain deletion mutant on the recruitment of Abp1 to the plasma membrane, coimmunoprecipitation of dynamin with Abp1, and coprecipitation of Abp1 with GST fusion of the dyanmin proline-rich domain demonstrate the interaction of Abp1 with dynamin 2. These results demonstrate that the BCR regulates the function of Abp1 by inducing Abp1 phosphorylation and actin cytoskeleton rearrangement, and that Abp1 facilitates BCR-mediated Ag processing by simultaneously interacting with dynamin and the actin cytoskeleton.
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