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Updated: Aug 14, 2026

Whole-Cell Recording of Calcium Release-Activated Calcium (CRAC) Currents in Human T Lymphocytes
Published on: December 21, 2010
Increased intracellular Ca2+ induces Ca2+ influx in human T lymphocytes
1Department of Pathology, University of Virginia, Charlottesville 22908.
Insights
Calcium (Ca2+) influx into T lymphocytes is initiated by intracellular calcium itself, not by the depletion of internal stores. This calcium-mediated entry may involve calmodulin, a key calcium-binding protein.
Area of Science:
- Cellular Biology
- Immunology
- Physiology
Background:
- Current hypotheses suggest calcium (Ca2+) entry into non-excitable cells is linked to intracellular Ca2+ store filling.
- The human T lymphocyte Jurkat cell line serves as a model for studying Ca2+ signaling.
Purpose of the Study:
- To investigate the mechanism initiating Ca2+ entry into Jurkat cells.
- To determine if Ca2+ store depletion or intracellular Ca2+ levels trigger Ca2+ influx.
Main Methods:
- Stimulation of Jurkat cells via antigen receptor or thapsigargin to induce Ca2+ release.
- Using Ca2+-caged compounds (nitr-5) to increase intracellular Ca2+.
- Blocking Ca2+ entry with phenothiazines or W-7.
Main Results:
- Both antigen receptor stimulation and thapsigargin induced Ca2+ release and subsequent influx.
- Thapsigargin-induced Ca2+ entry was blocked by chelating released Ca2+.
- Increased intracellular Ca2+ directly initiated Ca2+ influx.
- Phenothiazines and W-7 blocked Ca2+-initiated influx, suggesting calmodulin involvement.
Conclusions:
- Ca2+ entry into Jurkat cells is initiated by intracellular Ca2+ itself, not capacitatively linked to store depletion.
- Calmodulin likely mediates Ca2+-initiated Ca2+ influx in these cells.
Abstract:
One current hypothesis for the initiation of Ca2+ entry into nonelectrically excitable cells proposes that Ca2+ entry is linked to the state of filling of intracellular Ca2+ stores. In the human T lymphocyte cell line Jurkat, stimulation of the antigen receptor leads to release of Ca2+ from internal stores and influx of extracellular Ca2+. Similarly, treatment of Jurkat cells with the tumor promoter thapsigargin induced release of Ca2+ from internal stores and also resulted in influx of extracellular Ca2+. Initiation of Ca2+ entry by thapsigargin was blocked by chelation of Ca2+ released from the internal storage pool. The Ca2+ entry pathway also could be initiated by an increase in the intracellular concentration of Ca2+ after photolysis of the Ca(2+)-cage, nitr-5. Thus, three separate treatments that caused an increase in the intracellular concentration of Ca2+ initiated Ca2+ influx in Jurkat cells. In all cases, Ca(2+)-initiated Ca2+ influx was blocked by treatment with any of three phenothiazines or W-7, suggesting that it is mediated by calmodulin. These data suggest that release of Ca2+ from internal stores is not linked capacitatively to Ca2+ entry but that initiation is linked instead by Ca2+ itself, perhaps via calmodulin.
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