Saida K, van Breemen C
Blood Vessels. 1984;21(1):43-52. doi: 10.1159/000158493.
A comparison was made between the properties of the norepinephrine- and caffeine-sensitive Ca2+ store in both intact and skinned smooth muscle of the rabbit mesenteric artery. After a first application of 10(-5) M norepinephrine, reapplication of norepinephrine did not induce a second contraction in Ca2+-free medium. However, following this sequence 25 mM caffeine still induced a large contraction. The rates of Ca2+ leakage and Ca2+ filling of the norepinephrine-sensitive store were much faster than those of the caffeine-sensitive one. The amplitude of the norepinephrine-induced contraction in Ca2+-free medium also depended on the amount of Ca2+ present in the caffeine-sensitive store. In the saponin-treated skinned muscle caffeine induced a Ca2+ release only after loading with Ca2+, whereas norepinephrine was unable to induce Ca2+ release in the skinned preparation even after loading with Ca2+. The release of Ca2+ from the caffeine-sensitive store could be activated by Ca2+ itself when the skinned muscle was loaded with Ca2+ above 10(-6) M. These results suggest that the norepinephrine-sensitive Ca2+ store is distinct from a large fraction of the caffeine-sensitive one, and that the norepinephrine-sensitive store is close to the cell membrane. In vascular smooth muscle, under physiological conditions, Ca2+ released from the norepinephrine-sensitive store by norepinephrine may induce Ca2+ release from the caffeine-sensitive Ca2+ store which may be comprised of the sarcoplasmic reticulum.
对家兔肠系膜动脉完整和平滑肌去表皮状态下,去甲肾上腺素敏感和咖啡因敏感的Ca2+储存库的特性进行了比较。首次施加10(-5) M去甲肾上腺素后,在无Ca2+培养基中再次施加去甲肾上腺素不会引起第二次收缩。然而,按照这个顺序,25 mM咖啡因仍会引起强烈收缩。去甲肾上腺素敏感储存库的Ca2+泄漏和Ca2+填充速率比咖啡因敏感储存库的要快得多。在无Ca2+培养基中,去甲肾上腺素诱导的收缩幅度也取决于咖啡因敏感储存库中Ca2+的含量。在经皂角苷处理的去表皮肌肉中,咖啡因只有在加载Ca2+后才会诱导Ca2+释放,而去甲肾上腺素即使在加载Ca2+后也无法在去表皮制剂中诱导Ca2+释放。当去表皮肌肉加载的Ca2+高于10(-6) M时,Ca2+本身可激活咖啡因敏感储存库中的Ca2+释放。这些结果表明,去甲肾上腺素敏感的Ca2+储存库与大部分咖啡因敏感的储存库不同,且去甲肾上腺素敏感储存库靠近细胞膜。在血管平滑肌中,在生理条件下,去甲肾上腺素从去甲肾上腺素敏感储存库释放的Ca2+可能会诱导咖啡因敏感Ca2+储存库释放Ca2+,后者可能由肌浆网组成。