Low-threshold exocytosis induced by cAMP-recruited CaV3.2 (α1H) channels in rat chromaffin cells

被引:44
作者
Giancippoli, A [1 ]
Novara, M [1 ]
de Luca, A [1 ]
Baldelli, P [1 ]
Marcantoni, A [1 ]
Carbone, E [1 ]
Carabelli, V [1 ]
机构
[1] CNISM Res Unit, NIS Ctr Excellence, Dept Neurosci, I-10125 Turin, Italy
关键词
D O I
10.1529/biophysj.105.071647
中图分类号
Q6 [生物物理学];
学科分类号
071011 ;
摘要
We have studied the functional role of Ca(V)3 channels in triggering fast exocytosis in rat chromaffin cells (RCCs). CaV3 T-type channels were selectively recruited by chronic exposures to cAMP ( 3 days) via an exchange protein directly activated by cAMP (Epac)-mediated pathway. Here we show that cAMP-treated cells had increased secretory responses, which could be evoked even at very low depolarizations (-50, -40 mV). Potentiation of exocytosis in cAMP-treated cells did not occur in the presence of 50 mu M Ni2+, which selectively blocks T-type currents in RCCs. This suggests that the "low-threshold exocytosis'' induced by cAMP is due to increased Ca2+ influx through cAMP-recruited T-type channels, rather than to an enhanced secretion downstream of Ca2+ entry, as previously reported for short-term cAMP treatments ( 20 min). Newly recruited T-type channels increase the fast secretory response at low voltages without altering the size of the immediately releasable pool. They also preserve the Ca2+ dependence of exocytosis, the initial speed of vesicle depletion, and the mean quantal size of single secretory events. All this indicates that cAMP-recruited Ca(V)3 channels enhance the secretory activity of RCCs at low voltages by coupling to the secretory apparatus with a Ca2+ efficacy similar to that of already existing high-threshold Ca2+ channels. Finally, using RT-PCRs we found that the fast inactivating low-threshold Ca2+ current component recruited by cAMP is selectively associated to the alpha(1H) (Ca(V)3.2) channel isoform.
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收藏
页码:1830 / 1841
页数:12
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