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Published on: May 14, 2014
Retinoic acid-stimulated intercellular adhesion molecule-1 expression on SK-N-SH cells: calcium/calmodulin-dependent
1Molecular Endocrinology Laboratory, CHUL Research Center, Quebec, Canada.
Insights
Calcium and calmodulin signaling play crucial roles in regulating Intercellular Adhesion Molecule-1 (ICAM-1) expression. Retinoic acid and calcium-mobilizing agents stimulate ICAM-1, involving calmodulin and CaM kinase II pathways.
Area of Science:
- Immunology
- Cell Biology
- Neuroscience
Background:
- Intercellular Adhesion Molecule-1 (ICAM-1) is a key immune system receptor.
- ICAM-1 expression on various cells, including cancer cells, is modulated by proinflammatory cytokines.
Purpose of the Study:
- Investigate the roles of calcium (Ca2+) and calmodulin (CaM) in retinoic acid and gamma-interferon (IFN-gamma) signaling.
- Determine their involvement in up-regulating ICAM-1 expression in human neuroblastoma cells (SK-N-SH).
Main Methods:
- Utilized Ca2+-mobilizing agents (A23187, thapsigargin) to induce ICAM-1 expression.
- Employed calmodulin inhibitors (W7, calmidazolium) and a CaM kinase II inhibitor (KN-62).
- Analyzed ICAM-1 expression in the human neuroblastoma cell line SK-N-SH.
Main Results:
- Ca2+-mobilizing agents and IFN-gamma additively stimulated ICAM-1 expression.
- Retinoic acid and Ca2+-mobilizing agents' effects on ICAM-1 were inhibited by calmodulin inhibitors.
- Retinoic acid-stimulated ICAM-1 expression was dependent on CaM kinase II.
Conclusions:
- Calcium and calmodulin signaling are involved in retinoic acid-mediated ICAM-1 upregulation.
- Retinoic acid may partially utilize Ca2+ and calmodulin pathways, including CaM kinase II, for ICAM-1 regulation.
- IFN-gamma's stimulation of ICAM-1 does not appear to involve Ca2+ or calmodulin pathways.
Abstract:
Intercellular adhesion molecule-1 (ICAM-1) is an important cell surface adhesion receptor of the immune system. Its cell surface expression on a wide variety of cells, including cancer cells, is regulated by various proinflammatory cytokines. In the present study, we investigated the role of calcium (Ca2+) and calmodulin (CaM) in the retinoic acid and gamma-interferon (IFN-gamma) signaling in the human neuroblastoma cell line SK-N-SH for up-regulating ICAM-1 expression. A 24-h incubation in the presence of Ca(2+)-mobilizing agents (A23187 and thapsigargin) resulted in the induction of ICAM-1 expression. Both Ca(2+)-mobilizing agents stimulated ICAM-1 expression additively to IFN-gamma but not to retinoic acid, suggesting that IFN-gamma does not use Ca2+ to stimulate ICAM-1, whereas retinoic acid might use it in part. As a second messenger, Ca2+ can be coupled with calmodulin. Using calmodulin inhibitors (W7 and calmidazolium), we found that retinoic acid-stimulated, A23187-stimulated, and thapsigargin-stimulated but not FIN-gamma-stimulated ICAM-1 were inhibited. Calmodulin signaling elicited by retinoic acid was an early event occurring within the first h of retinoic acid treatment, providing evidence that they may both be coupled to regulate gene expression. Using a novel CaM kinase II inhibitor, KN-62, we demonstrated that retinoic acid stimulated ICAM-1 expression in a CaM kinase II-dependent fashion. The mechanisms whereby CaM kinase II mediates retinoic acid activity on ICAM-1 expression remain to be elucidated.
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