Spät A, Rohács T, Horváth A, Szabadkai G, Enyedi P
Dept. of Physiology, Semmelweis University of Medicine, Budapest, Hungary.
Endocr Res. 1996 Nov;22(4):569-76. doi: 10.1080/07435809609043748.
The concept that voltage-dependent Ca2+ influx is essential in the aldosterone stimulating action of angiotensin II (AII) has been recently challenged by the demonstration of the dihydropyridine (DHP) insensitive 'capacitative' Ca2+ uptake mechanism. The DHP-sensitivity of AII-induced aldosterone secretion is still to be explained. In rat glomerulosa cells the lag phase of AII-induced depolarization is more than 30 s, and there is no enhanced Ca2+ influx within the first min of stimulation. Yet we observed that DHPs as well as diltiazem influenced also the peak of cytoplasmic Ca2+ signal, although the peak (approximately 12 s) is attributed to Ca2+ release alone. Nifedipine reduced the Ca2+ transient induced by AII even after complete inhibition of Ca2+ channel activity. Recalling the loose attachment of InsP3 receptors (IP3R) to the plasma membrane, and the homology between the cytosolic domain of IP3R and the Ca2+ release channel (ryanodine receptor) of skeletal muscle, we proposed that DHP-sensitive L-type Ca2+ channels (DHP receptors) influence InsP3-induced Ca2+ release rather than Ca2+ influx in AII-stimulated cells. Although the dominant isoform is the neuroendocrine (D) one, the skeletal muscle isoform of L-type voltage-dependent Ca2+ channel is also expressed in rat glomerulosa cells. This isoform may be a candidate for protein-protein interaction between DHPR and subplasmalemmal IP3R, similarly to that occurring between DHP receptors and ryanodine receptors in skeletal muscle.
电压依赖性Ca2+内流在血管紧张素II(AII)刺激醛固酮分泌中起关键作用这一概念,最近受到了二氢吡啶(DHP)不敏感的“容量性”Ca2+摄取机制的挑战。AII诱导的醛固酮分泌对DHP的敏感性仍有待解释。在大鼠肾小球旁细胞中,AII诱导的去极化的延迟期超过30秒,并且在刺激的第一分钟内没有增强的Ca2+内流。然而,我们观察到DHP以及地尔硫卓也影响细胞质Ca2+信号的峰值,尽管该峰值(约12秒)仅归因于Ca2+释放。即使在完全抑制Ca2+通道活性后,硝苯地平仍能降低AII诱导的Ca2+瞬变。鉴于肌醇1,4,5-三磷酸受体(IP3R)与质膜的松散附着,以及IP3R胞质结构域与骨骼肌Ca2+释放通道(兰尼碱受体)之间的同源性,我们提出DHP敏感的L型Ca2+通道(DHP受体)在AII刺激的细胞中影响IP3诱导的Ca2+释放而非Ca2+内流。虽然主要的同工型是神经内分泌(D)型,但L型电压依赖性Ca2+通道的骨骼肌同工型也在大鼠肾小球旁细胞中表达。与骨骼肌中DHP受体和兰尼碱受体之间发生的情况类似,这种同工型可能是DHP受体与质膜下IP3R之间蛋白质-蛋白质相互作用的候选者。