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磷酸二酯酶4型抑制作用可增加小鼠嗜铬细胞中的L型钙电流、动作电位发放以及胞吐作用的量子大小。

PDE type-4 inhibition increases L-type Ca(2+) currents, action potential firing, and quantal size of exocytosis in mouse chromaffin cells.

作者信息

Marcantoni A, Carabelli V, Vandael D H, Comunanza V, Carbone E

机构信息

Department of Neuroscience, NIS Center, Torino, Italy.

出版信息

Pflugers Arch. 2009 Mar;457(5):1093-110. doi: 10.1007/s00424-008-0584-4. Epub 2008 Sep 9.

Abstract

We studied the effects of the cAMP-hydrolyzing enzyme phosphodiesterase type-4 (PDE4) on the L-type Ca(2+) channels (LTCCs) and Ca(2+)-dependent secretion in mouse chromaffin cells (MCCs). The selective PDE4 inhibitor rolipram (3 microM) had a specific potentiating action on Ca(2+) currents of MCCs (40% increase within 3 min). A similar effect was produced by the selective beta(1)-AR agonist denopamine (1 microM) and by the unselective PDEs inhibitor IBMX (100 microM). Rolipram and denopamine actions were selective for LTCCs, and the Ca(2+) current increase remained unchanged if the two compounds were applied simultaneously. This suggests that at rest, LTCCs in MCCs are down-regulated by the low levels of cAMP determined by PDE4 activity and that LTCCs can be up-regulated by either inhibiting PDE4 or activating beta(1)-AR. No other PDEs are likely involved in this specific action. PDE4 inhibition had also a marked effect on the spontaneous firing of resting MCCs and catecholamine secretion. Rolipram up-regulated the LTCCs contributing to the "pace-maker" current underlying action potential (AP) discharges and accelerated the firing rate, with no significant effects on AP waveform. Acceleration of AP firing was also induced by the LTCC-agonist Bay K (1 microM), while nifedipine (3 microM) reduced the firing frequency, suggesting that LTCCs and intracellular cAMP play a key role in setting the pace-maker current regulating MCCs excitability. Rolipram increased also the size of the ready-releasable pool and the quantal content of secretory vesicles without affecting their probability of release. Thus, rolipram acts on MCCs by up-regulating both exocytosis and AP firings. These two processes are effectively down-regulated by PDE4 at rest and can dramatically increase the quantity of released catecholamines when PDE4 is inhibited and/or cAMP is raised.

摘要

我们研究了环磷酸腺苷(cAMP)水解酶4型磷酸二酯酶(PDE4)对小鼠嗜铬细胞(MCCs)中L型钙通道(LTCCs)和钙依赖性分泌的影响。选择性PDE4抑制剂咯利普兰(3 microM)对MCCs的钙电流有特异性增强作用(3分钟内增加40%)。选择性β1-肾上腺素能受体(β1-AR)激动剂地诺帕明(1 microM)和非选择性磷酸二酯酶抑制剂异丁基甲基黄嘌呤(IBMX,100 microM)也产生了类似的效果。咯利普兰和地诺帕明的作用对LTCCs具有选择性,如果同时应用这两种化合物,钙电流增加保持不变。这表明在静息状态下,MCCs中的LTCCs被PDE4活性所决定的低水平cAMP下调,并且LTCCs可以通过抑制PDE4或激活β1-AR而上调。可能没有其他磷酸二酯酶参与这种特异性作用。PDE4抑制对静息MCCs的自发放电和儿茶酚胺分泌也有显著影响。咯利普兰上调了参与动作电位(AP)放电基础“起搏器”电流的LTCCs,并加速了放电频率,对AP波形无显著影响。LTCC激动剂Bay K(1 microM)也诱导了AP放电加速,而硝苯地平(3 microM)降低了放电频率,表明LTCCs和细胞内cAMP在设定调节MCCs兴奋性的起搏器电流中起关键作用。咯利普兰还增加了可随时释放池的大小和分泌囊泡的量子含量,而不影响其释放概率。因此,咯利普兰通过上调胞吐作用和AP放电来作用于MCCs。这两个过程在静息时被PDE4有效下调,当PDE4被抑制和/或cAMP升高时,可显著增加释放的儿茶酚胺量。

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