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内皮素诱导的血管平滑肌钙离子增加并不依赖于二氢吡啶敏感性钙离子通道。

Endothelin-induced increases in vascular smooth muscle Ca2+ do not depend on dihydropyridine-sensitive Ca2+ channels.

作者信息

Mitsuhashi T, Morris R C, Ives H E

机构信息

Cardiovascular Research Institute, University of California, San Francisco 94143.

出版信息

J Clin Invest. 1989 Aug;84(2):635-9. doi: 10.1172/JCI114209.

Abstract

Endothelin is a potent mammalian vasoconstrictive peptide with structural homology to cation channel-binding insect toxins. We tested the proposal that this peptide directly activates dihydropyridine-sensitive Ca2+ channels in cultured vascular smooth muscle (VSM) cells. First, we found that cell Ca2+ can be altered in VSM by activation of voltage-operated Ca2+ channels. KCl-induced depolarization and the dihydropyridine Ca2+ channel agonist (-) Bay K 8644 (10 microM) both raised cell Ca2+ more than twofold; the effect of KCl was blocked by the inhibitory enantiomer, (+) Bay K 8644 (40 microM). Similar responses were observed in Chinese hamster ovary (CHO) cells. Synthetic endothelin (4 x 10(-8) M) raised Ca2+ in VSM but not CHO cells from 100 +/- 17 to 561 +/- 34 nM within 12 s. Ca2+ subsequently fell to basal levels after 30 min. Half maximal Ca2+ response was at 4 x 10(-9) M endothelin. Unlike endothelin, thrombin raised Ca2+ in both VSM and CHO cells. The Ca2+ responses to endothelin and thrombin were not affected by nicardipine (1 microM), (+) Bay K 8644, or Ca2+-free solutions. Lastly, both hormones caused release of inositol phosphates in VSM cells. However, the response to thrombin was more than 10-fold larger and was more rapid than the response to endothelin; the thrombin response was sensitive to pertussis toxin, while the response to endothelin was not. Thus endothelin, like thrombin, raises cell Ca2+ in VSM by mobilization of intracellular stores and not by activation of dihydropyridine-sensitive Ca2+ channels. However, their receptors are distinct and they exhibit important differences in signal transduction.

摘要

内皮素是一种强效的哺乳动物血管收缩肽,与阳离子通道结合昆虫毒素具有结构同源性。我们检验了该肽直接激活培养的血管平滑肌(VSM)细胞中对二氢吡啶敏感的Ca2+通道这一假说。首先,我们发现通过激活电压门控Ca2+通道可改变VSM细胞中的Ca2+。KCl诱导的去极化和二氢吡啶Ca2+通道激动剂(-)Bay K 8644(10 microM)均可使细胞Ca2+升高两倍以上;KCl的作用被抑制性对映体(+)Bay K 8644(40 microM)阻断。在中国仓鼠卵巢(CHO)细胞中也观察到了类似反应。合成内皮素(4×10-8 M)在12秒内使VSM细胞中的Ca2+从100±17 nM升高至561±34 nM,但对CHO细胞无此作用。30分钟后Ca2+随后降至基础水平。Ca2+反应的半数最大值出现在4×10-9 M内皮素时。与内皮素不同,凝血酶可使VSM和CHO细胞中的Ca2+均升高。对内皮素和凝血酶的Ca2+反应不受尼卡地平(1 microM)、(+)Bay K 8644或无Ca2+溶液的影响。最后,两种激素均导致VSM细胞中肌醇磷酸的释放。然而,对凝血酶的反应比对内皮素的反应大10倍以上且更迅速;凝血酶反应对百日咳毒素敏感,而对内皮素的反应则不敏感。因此,内皮素与凝血酶一样,通过动员细胞内储存物而非激活对二氢吡啶敏感的Ca2+通道来升高VSM细胞中的Ca2+。然而,它们的受体不同,且在信号转导方面表现出重要差异。

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