Vasopressin-stimulated Ca2+ spiking in vascular smooth muscle cells involves phospholipase D.

Vasopressin-stimulated Ca2+ spiking in vascular smooth muscle cells involves phospholipase D.
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DOI:
10.1152/ajpheart.2001.280.6.h2658
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发表时间:
2001-06
期刊:
American journal of physiology. Heart and circulatory physiology
影响因子:
--
通讯作者:
Y. Li;A. Shiels;G. Maszak;K. Byron
Y. Li;A. Shiels;G. Maszak;K. Byron
中科院分区:
其他
文献类型:
--
作者:
Y. Li;A. Shiels;G. Maszak;K. Byron

文献摘要

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Physiological concentrations of [Arg(8)]vasopressin (AVP; 10-500 pM) stimulate oscillations of cytosolic free Ca2+ concentration (Ca2+ spikes) in A7r5 vascular smooth muscle cells. We previously reported that this effect of AVP was blocked by a putative phospholipase A2 (PLA2) inhibitor, ONO-RS-082 (5 microM). In the present study, the products of PLA2, arachidonic acid (AA), and lysophospholipids were found to be ineffective in stimulating Ca2+ spiking, and inhibitors of AA metabolism did not prevent AVP-stimulated Ca2+ spiking. Thin layer chromatography was used to monitor the release of AA and phosphatidic acid (PA), which are the products of PLA2 and phospholipase D (PLD), respectively. AVP (100 pM) stimulated both AA and PA formation, but only PA formation was inhibited by ONO-RS-082 (5 microM). Exogenous PLD (type VII; 2.5 U/ml) stimulated Ca2+ spiking equivalent to the effect of 100 pM AVP. AVP stimulated transphosphatidylation of 1-butanol (a PLD-catalyzed reaction) but not 2-butanol, and 1-butanol (but not 2-butanol) completely prevented AVP-stimulated Ca2+ spiking. Protein kinase C (PKC) inhibition, which completely prevents AVP-stimulated Ca2+ spiking, did not inhibit AVP-stimulated phosphatidylbutanol formation. These results suggest that AVP-stimulated Ca2+ spiking depends on activation of PLD rather than PLA2 and that PKC activation may be downstream of PLD in the signaling cascade.