Calcium influx through CRAC channels controls actin organization and dynamics at the immune synapse.
basic_science · Level V
Where this comes from
- Record sourced from PubMed, PMID 27440222.
- Also identified by DOI 10.7554/eLife.14850 and PMC identifier 4956410.
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Abstract
T cell receptor (TCR) engagement opens Ca(2+) release-activated Ca(2+) (CRAC) channels and triggers formation of an immune synapse between T cells and antigen-presenting cells. At the synapse, actin reorganizes into a concentric lamellipod and lamella with retrograde actin flow that helps regulate the intensity and duration of TCR signaling. We find that Ca(2+) influx is required to drive actin organization and dynamics at the synapse. Calcium acts by promoting actin depolymerization and localizing actin polymerization and the actin nucleation promotion factor WAVE2 to the periphery of the lamellipod while suppressing polymerization elsewhere. Ca(2+)-dependent retrograde actin flow corrals ER tubule extensions and STIM1/Orai1 complexes to the synapse center, creating a self-organizing process for CRAC channel localization. Our results demonstrate a new role for Ca(2+) as a critical regulator of actin organization and dynamics at the synapse, and reveal potential feedback loops through which Ca(2+) influx may modulate TCR signaling.
Medical subject headings
- Actins
- Antigen-Presenting Cells
- Calcium
- Calcium Release Activated Calcium Channels
- Cell Adhesion
- Protein Multimerization
- T-Lymphocytes