Joseph S K, Coll K E, Thomas A P, Rubin R, Williamson J R
J Biol Chem. 1985 Oct 15;260(23):12508-15.
The influence of extracellular Ca2+ on hormone-mediated increases of cytosolic free Ca2+ [( Ca2+]i) and phosphorylase activity was studied in isolated hepatocytes. In the presence of 1.3 mM extracellular Ca2+, the stimulation of phosphorylase activity produced by vasopressin or phenylephrine was maintained for 20-30 min. In contrast, the change in [Ca2+]i under these conditions was more transient and declined within 3-4 min to steady state values only 70 +/- 8 nM above the resting [Ca2+]i. Removal of the hormone from its receptor with specific antagonists caused a decline in [Ca2+]i back to the original resting values. Subsequent addition of a second hormone elicited a further Ca2+ transient. If the antagonist was omitted, the second hormone addition did not increase [Ca2+]i indicating that the labile intracellular Ca2+ pool remains depleted during receptor occupation. When extracellular Ca2+ was omitted, both the changes of [Ca2+]i and phosphorylase a caused by vasopressin were transient and returned exactly to resting values within 3-4 min. The subsequent readdition of Ca2+ to these cells produced a further increase of [Ca2+]i and phosphorylase activity which was larger than the changes observed upon Ca2+ addition to untreated cells. This reactivation of phosphorylase showed saturation kinetics with respect to extracellular [Ca2+], was maximally stimulated within 1 min of vasopressin addition and was inhibited by high concentration of diltiazem. We conclude that entry of extracellular Ca2+ into the cell is required in order to obtain a sustained hormonal stimulation of phosphorylase activity and is responsible for the maintenance of a small steady state elevation of [Ca2+]i.
在分离的肝细胞中研究了细胞外Ca2+对激素介导的胞质游离Ca2+([Ca2+]i)增加和磷酸化酶活性的影响。在存在1.3 mM细胞外Ca2+的情况下,血管加压素或去氧肾上腺素对磷酸化酶活性的刺激可持续20 - 30分钟。相比之下,在这些条件下[Ca2+]i的变化更短暂,在3 - 4分钟内下降,仅比静息[Ca2+]i高70±8 nM并达到稳态值。用特异性拮抗剂将激素从其受体上移除会导致[Ca2+]i下降回到原始静息值。随后添加第二种激素会引发进一步的Ca2+瞬变。如果省略拮抗剂,添加第二种激素不会增加[Ca2+]i,这表明在受体被占据期间不稳定的细胞内Ca2+池仍然耗尽。当省略细胞外Ca2+时,血管加压素引起的[Ca2+]i和磷酸化酶a的变化都是短暂的,并在3 - 4分钟内精确回到静息值。随后向这些细胞重新添加Ca2+会使[Ca2+]i和磷酸化酶活性进一步增加,这比向未处理细胞添加Ca2+时观察到的变化更大。这种磷酸化酶的重新激活相对于细胞外[Ca2+]表现出饱和动力学,在添加血管加压素后1分钟内受到最大刺激,并被高浓度的地尔硫卓抑制。我们得出结论,细胞外Ca2+进入细胞是获得激素对磷酸化酶活性的持续刺激所必需的,并且负责维持[Ca2+]i的小稳态升高。