Jobert A S, Leroy C, Butlen D, Silve C
INSERM U 426, Faculté de Médecine Xavier Bichat, and Institut Fédératif de Recherche Cellules Epithéliales, Université Paris VII, France.
Endocrinology. 1997 Dec;138(12):5282-92. doi: 10.1210/endo.138.12.5556.
PTH-induced mobilization of cytosolic Ca2+ in a human kidney cell line (HEK/W) occurring in the absence of cAMP stimulation was characterized and compared with that obtained in the same cells stably transfected by the PTH/PTH-related peptide (PTHrp) receptor (HEK/T). In both cell lines, N-terminal fragments of PTH and PTHrp induced a concentration-dependent biphasic stimulation in [Ca2+]i: a transient peak followed by a slow linear increase. These increases in [Ca2+]i were inhibited by the PTH antagonist [Nle(8,18),Tyr(34)]bPTH(3-34). The transient peaks were due to calcium release from intracellular stores, as they resisted quenching of calcium in the extracellular buffer and were abolished by prior emptying of intracellular stores. These peaks differed, however, both in latency period and in magnitude, in the two cell lines. The phospholipase C inhibitor U73122 inhibited the PTH-induced increase in [Ca2+]i in HEK/T cells, but not in HEK/W. Similarly, PTH-induced inositol phosphate (InsPs) production was detected in HEK/T but not in HEK/W cells. PTH-induced calcium release in HEK/W cells was inhibited by the simultaneous presence of ryanodine and U73122. Low level PTH/PTHrp receptor messenger RNA expression was demonstrated by ribonuclease protection in HEK/W cells, although no specific binding of [125I]PTHrP(1-34) could be detected. Amplification products for the PTH/PTHrp receptor 1, but no other isoforms, were detected by RT-PCR in HEK/W cells. As expected, HEK/T cells responded to PTH by a 500-fold stimulation in cAMP production and expressed large numbers of PTH/PTHrp receptors, as shown by [125I]PTHrp binding. These results demonstrate that the signal transduction pathways activated by PTH in HEK/W and HEK/T cells are different. Because the major difference in these cell lines is the number of PTH/PTHrp receptors expressed, these results suggest that the transduction of signals by the PTH/PTHrp receptor is controlled by receptor number in such a way that PTH stimulates an increase in intracellular calcium in the absence of stimulation of InsPs and cAMP production in cells expressing low levels of PTH/PTHrp receptor, but stimulates calcium release through an InsPs pathway and induces cAMP production in cells expressing large numbers of PTH/PTHrp receptors. The control of receptor number may be one of the mechanisms through which PTH effects are regulated.
对人肾细胞系(HEK/W)中在无环磷酸腺苷(cAMP)刺激情况下甲状旁腺激素(PTH)诱导的胞质Ca2+动员进行了表征,并与稳定转染了甲状旁腺激素/甲状旁腺激素相关肽(PTHrp)受体的相同细胞(HEK/T)中获得的情况进行了比较。在这两种细胞系中,PTH和PTHrp的N端片段均诱导[Ca2+]i呈浓度依赖性双相刺激:一个瞬时峰值,随后是缓慢的线性增加。这些[Ca2+]i的增加被PTH拮抗剂[Nle(8,18),Tyr(34)]bPTH(3 - 34)抑制。瞬时峰值是由于细胞内钙库释放钙,因为它们能抵抗细胞外缓冲液中钙的淬灭,并且在预先排空细胞内钙库后消失。然而,这两个细胞系中的这些峰值在潜伏期和幅度上均有所不同。磷脂酶C抑制剂U73122抑制HEK/T细胞中PTH诱导的[Ca2+]i增加,但不抑制HEK/W细胞中的增加。同样,在HEK/T细胞中检测到PTH诱导的肌醇磷酸(InsPs)生成,而在HEK/W细胞中未检测到。同时存在ryanodine和U73122可抑制HEK/W细胞中PTH诱导的钙释放。通过核糖核酸酶保护在HEK/W细胞中证实了低水平的PTH/PTHrp受体信使核糖核酸表达,尽管未检测到[125I]PTHrP(1 - 34)的特异性结合。通过逆转录聚合酶链反应(RT-PCR)在HEK/W细胞中检测到PTH/PTHrp受体1的扩增产物,但未检测到其他亚型。正如预期的那样,HEK/T细胞对PTH的反应是cAMP生成增加500倍,并且表达大量的PTH/PTHrp受体,如[125I]PTHrp结合所示。这些结果表明,PTH在HEK/W和HEK/T细胞中激活的信号转导途径不同。因为这些细胞系的主要差异在于表达的PTH/PTHrp受体数量,所以这些结果表明,PTH/PTHrp受体的信号转导受受体数量控制,使得PTH在表达低水平PTH/PTHrp受体的细胞中在不刺激InsPs和cAMP生成的情况下刺激细胞内钙增加,但在表达大量PTH/PTHrp受体的细胞中通过InsPs途径刺激钙释放并诱导cAMP生成。受体数量的控制可能是调节PTH作用的机制之一。