Lack of Ca2+- and ATP-dependent priming stage in caffeine-induced exocytosis in bovine adrenal chromaffin cells: Comparison with Ca2+

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Abstract

1. Caffeine (20-40 mM) secreted catecholamines from β-escin-permeabilized bovine adrenal chromaffin cells in the presence or absence of 2 mM MgATP. The caffeine-induced catecholamine secretion in the presence of MgATP was to the same extent as that in the absence of MgATP. 2. Ca2+ (0.1-10 μM) induced a significantly greater secretion of catecholamines in the presence of MgATP than in the absence of MgATP. 3. ML-9 (100 μM) and ML-7 (100 μM), myosin light chain kinase inhibitors, and W-7 (100 μM) and trifluoperazine (TFP; 30 μM), calmodulin antagonists, inhibited the Ca2+ -induced catecholamine secretion in the presence of MgATP but not in the absence of MgATP. They did not inhibit the caffeine-induced catecholamine secretion in the presence of MgATP. 4. The ATP-independent phase in Ca2+ -dependent exocytosis is thought to be associated with the final step that ultimately leads to fusion, while the ATP-dependent phase is thought to be associated with a vesicle priming reaction. Therefore, these results suggest that the ATP-requiring priming stage is lacking in the process of caffeine-induced exocytosis in bovine adrenal chromaffin cells.

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Matsumura, C., Kuwashima, H., & Kimura, T. (2000). Lack of Ca2+- and ATP-dependent priming stage in caffeine-induced exocytosis in bovine adrenal chromaffin cells: Comparison with Ca2+. Journal of Autonomic Pharmacology, 20(1), 31–36. https://doi.org/10.1046/j.1365-2680.2000.00161.x

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