病理人甲状旁腺主细胞和成纤维细胞内皮素诱导的钙信号和分泌。

Receptors & signal transduction Pub Date : 1997-01-01
P Ridefelt, P Hellman, T Carling, J Rastad, G Akerström
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引用次数: 0

摘要

内皮素(ETs)由21个氨基酸组成,具有血管活性和有丝分裂特性。三种异肽(ET-1、et -2和et -3)及其受体(E1A和ETB亚型)在许多组织中表达,并可能介导自分泌/旁分泌作用。目前的研究表明,ET-1触发细胞质Ca2+ ([Ca2+]i)在病理人甲状旁腺细胞浓度的双相增加。在ET-1的10(-10)-10(-7)mol/L范围内,峰值和持续的[Ca2+]i增加以及应答细胞的比例都是剂量依赖性的。在没有外部Ca2+的情况下,et -1诱导的[Ca2+]i峰减弱。ET-3对[Ca2+]i没有影响,表明ETA受体亚型的功能优势。ET-1 (10 nmol/L)在0.5 mmol/L浓度下降低甲状旁腺激素的分泌,而在较高的Ca2+浓度下不降低,甲状旁腺细胞ET释放受Ca2+升高的抑制。在单层培养过程中,过度生长甲状旁腺主细胞的成纤维细胞对ET-1的反应是双期[Ca2+]i增加或重复[Ca2+]i峰值,但对外部Ca2+的升高没有反应。这些发现表明,ET分泌和ET受体表达可能在调节人PTH分泌中构成自分泌/旁分泌机制。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Endothelin-induced calcium signaling and secretion in chief cells and fibroblasts from pathological human parathyroid glands.

Endothelins (ETs) are 21 amino acid peptides with vasoactive and mitogenic properties. The three isopeptides (ET-1, -2, and -3) and their receptors (E1A and ETB subtypes) display expression in numerous tissues and possibly mediate autocrine/paracrine actions. The present investigation shows that ET-1 triggers biphasic increases of the concentration of cytoplasmic Ca2+ ([Ca2+]i) in pathological human parathyroid cells. Both the peak and sustained [Ca2+]i increase, as well as the proportion of responding cells, are dose-dependent in the 10(-10)-10(-7) mol/L range of ET-1. In absence of external Ca2+, the ET-1-induced [Ca2+]i peak is attenuated. ET-3 has no effect on [Ca2+]i indicating functional dominance of the ETA receptor subtype. ET-1 (10 nmol/L) lowers parathyroid hormone secretion in 0.5 mmol/L but not in higher external Ca2+ concentrations, and parathyroid cell ET release is inhibited by increases of external Ca2+. Fibroblasts overgrowing the parathyroid chief cells during monolayer culture respond to ET-1 with biphasic [Ca2+]i increases or repetitive [Ca2+]i spikes, but show no response to elevation of external Ca2+. These findings imply that ET secretion and ET receptor expression may constitute an autocrine/paracrine mechanism in the regulation of human PTH secretion.

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