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Updated: Jun 22, 2026

Real-time Live Imaging of T-cell Signaling Complex Formation
Published on: June 23, 2013
Visualizing the molecular and cellular events underlying the initiation of B-cell activation
Naomi E Harwood1, Facundo D Batista
1Lymphocyte Interaction Laboratory, Cancer Research UK London Research Institute, Lincoln's Inn Fields Laboratories, 44 Lincoln's Inn Fields, London, UK. facundo.batista@cancer.org.uk
Insights
Effective B cell activation, crucial for immunity, begins with B cell receptor (BCR) binding antigen. Early signaling occurs in BCR-microclusters, enhanced by cell spreading and visualized in vivo using advanced microscopy.
Area of Science:
- Immunology
- Cell Biology
- Molecular Biology
Background:
- B cell activation is essential for adaptive immunity.
- B cell receptor (BCR) engagement with antigen initiates B cell activation.
- Understanding early molecular and cellular events is key to immune response.
Purpose of the Study:
- To review recent findings on the initial processes of B cell activation.
- To highlight insights into early molecular events preceding immunological synapse formation.
- To discuss in vivo imaging studies of B cell-antigen interactions.
Main Methods:
- Analysis of high-resolution imaging studies.
- Investigation of molecular signaling pathways within B cells.
- Utilizing multiphoton microscopy for in vivo dynamic characterization.
Main Results:
- BCR-microclusters identified as signaling hubs for "microsignalosomes" upon antigen engagement.
- B cell spreading enhances signaling in a CD19-dependent manner.
- In vivo studies reveal cell-mediated antigen presentation by macrophages and dendritic cells.
Conclusions:
- Early B cell activation involves dynamic signaling platforms (BCR-microclusters).
- CD19 plays a role in signal propagation during B cell spreading.
- Advanced microscopy provides critical insights into B cell-antigen interactions in their native environment.
Abstract:
The appropriate activation of B cells is critical for the development of effective immune responses. B cell activation is initiated following the engagement of the B cell receptor (BCR) with specific antigen. The spatiotemporal characterization of the ensuing molecular and cellular events has been the subject of recent high-resolution imaging investigations. In this review we highlight information gathered thus far concerning the initial processes underlying the activation of B cells. First, we consider studies that have offered new insights into the early molecular events that occur within the B cell prior to formation of the immunological synapse. As such, BCR-microclusters formed on engagement with antigen have been identified as the sites of active signaling and assembly of "microsignalosomes." Furthermore, signaling through these "microsignalosomes" is propagated and enhanced through B cell spreading in response to membrane-antigen in a CD19-dependent manner. Finally, we discuss a number of multiphoton microscopy studies that have enabled dynamic characterization of the initial encounters between B cells and antigen in vivo. These investigations visualize the presentation of larger antigens to B cells via cell-mediated strategies, involving macrophages in the subcapsular sinus and dendritic cells in the paracortex.
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