Localized Secretion of ATP and Opioids Revealed through Single Ca2+ Channel Modulation in Bovine Chromaffin Cells
نویسندگان
چکیده
In bovine chromaffin cells, the Ca2+ channels involved in exocytosis are effectively inhibited by ATP and opioids that are coreleased with catecholamines during cell activity. This autocrine loop causes a delay in Ca2+ channel activation that is quickly removed by preceding depolarizations. Changes in Ca2+ channel gating by secreted products thus make it possible to correlate Ca2+ channel activity to secretory events. Here, using cell-attached patch recordings, we found a remarkable correlation between delayed Ca2+ channel openings and neurotransmitter secretion induced by either local or whole-cell Ba2+ stimulation. The action is specific for N- and P/Q-type channels and largely prevented by PTX and mixtures of purinergic and opioid receptor antagonists. Overall, our data provide evidence that exocytosis, viewed through the autocrine inhibition of non-L-type channels, is detectable in membrane patches of approximately 1 microm2 distributed over 30%-40% of the total cell surface, while Ca2+ channels and autoreceptors are uniformly distributed over most of the cell membrane.
منابع مشابه
Localized Secretion of ATP and Opioids Revealed through Single Ca Channel Modulation in Bovine Chromaffin Cells
et al., 1996b). Activation of Nand P/Q-type channels Summary in these cells is effectively slowed down by ATP and opioids (Gandı́a et al., 1993; Albillos et al., 1996a) that In bovine chromaffin cells, the Ca21 channels involved are coreleased with catecholamines during exocytosis in exocytosis are effectively inhibited by ATP and opi(Viveros et al., 1979; Winkler et al., 1980). The action is oi...
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عنوان ژورنال:
- Neuron
دوره 20 شماره
صفحات -
تاریخ انتشار 1998