Bidwell J P, Fryer M J, Firek A F, Donahue H J, Heath H
Endocrine Research Unit, Mayo Clinic, Rochester, Minnesota 55905.
Endocrinology. 1991 Feb;128(2):1021-8. doi: 10.1210/endo-128-2-1021.
We have investigated the effects of PTH-induced desensitization on second messenger interactions in the rat osteosarcoma cell line ROS 17/2.8. Adenylate cyclase activation was assessed by accumulation of immunoassayable cAMP, and cytosolic calcium ion ([Ca2+]i) concentrations were measured in adherent perifused cells loaded with the Ca2(+)-sensitive bioluminescent protein aequorin. Preexposure to rat PTH-(1-34) [rPTH-(1-34); 10(-8) M for 48 h, then 10(-7) M for 24 h] dramatically reduced (by 85%) the cAMP response to fresh challenge [2 min; 10(-9)-10(-7) M rPTH-(1-34)], but the peak PTH-induced rise of [Ca2+]i was not diminished significantly (0-20%). Nevertheless, we did observe other changes in the PTH-induced [Ca2+]i response. Exposure of treated cells to (Bu)2cAMP nearly abolished the [Ca2+]i response to PTH (greater than 80% reduction), but had much less effect on the PTH-stimulated [Ca2+]i increment of the naive cells (less than 35% reduction). Treated cells also had a blunted [Ca2+]i response to PTH in the presence of low extracellular calcium (greater than 60% reduction), but in the naive cells, low extracellular Ca2+ did not significantly diminish the peak PTH-induced [Ca2+]i rise, although low extracellular Ca2+ dramatically reduced the area under this [Ca2+]i transient (greater than 50%). Low extracellular Ca2+ had no influence on the peak [Ca2+]i responses of treated cells to bradykinin or prostaglandin F2 alpha. Although the peak PTH-stimulated [Ca2+]i rise of treated cells in normal Ca2+ medium was not significantly attenuated, the time to half-maximum [Ca2+]i concentration was significantly increased (greater than 100%), and the area under the [Ca2+]i transient was diminished. These alterations in the [Ca2+]i response of treated cells were not observed upon challenge with bradykinin or prostaglandin F2 alpha. Thus, 1) the cAMP and [Ca2+]i responses of ROS 17/2.8 cells to rPTH-(1-34) are not obligatorily coupled; 2) the response of naive cells to PTH includes both the release of Ca2+ from intracellular stores and the entry of extracellular Ca2+; and 3) pretreatment of these cells with rPTH-(1-34) augments the dependence on Ca2+ entry during hormone rechallenge. We propose that the preserved PTH-stimulated [Ca2+]i rise in treated cells results partly from loss of cAMP-mediated inhibition of extracellular Ca2+ entry.
我们研究了甲状旁腺激素(PTH)诱导的脱敏对大鼠骨肉瘤细胞系ROS 17/2.8中第二信使相互作用的影响。通过可免疫检测的环磷酸腺苷(cAMP)积累来评估腺苷酸环化酶的激活,并在加载了对Ca2+敏感的生物发光蛋白水母发光蛋白的贴壁灌流细胞中测量胞质钙离子([Ca2+]i)浓度。预先暴露于大鼠PTH-(1-34)[rPTH-(1-34);10^(-8) M处理48小时,然后10^(-7) M处理24小时]显著降低(降低85%)了对新鲜刺激[2分钟;10^(-9)-10^(-7) M rPTH-(1-34)]的cAMP反应,但PTH诱导的[Ca2+]i峰值升高没有显著降低(0-20%)。然而,我们确实观察到了PTH诱导的[Ca2+]i反应的其他变化。将处理过的细胞暴露于双丁酰环磷腺苷((Bu)2cAMP)几乎消除了对PTH的[Ca2+]i反应(降低超过80%),但对未处理细胞中PTH刺激的[Ca2+]i增加的影响要小得多(降低不到35%)。在细胞外钙浓度较低时,处理过的细胞对PTH的[Ca2+]i反应也减弱(降低超过60%),但在未处理细胞中,细胞外Ca2+浓度较低时并没有显著降低PTH诱导的[Ca2+]i峰值升高,尽管细胞外Ca2+浓度较低显著降低了该[Ca2+]i瞬变的曲线下面积(降低超过50%)。细胞外Ca2+浓度较低对处理过的细胞对缓激肽或前列腺素F2α的[Ca2+]i峰值反应没有影响。尽管在正常Ca2+培养基中处理过的细胞中PTH刺激的[Ca2+]i峰值升高没有显著减弱,但达到[Ca^2+]i浓度最大值一半的时间显著增加(增加超过100%),并且[Ca2+]i瞬变的曲线下面积减小。在用缓激肽或前列腺素F2α刺激时,未观察到处理过的细胞的[Ca2+]i反应有这些改变。因此,1)ROS 17/2.8细胞对rPTH-(1-34)的cAMP和[Ca2+]i反应并非必然偶联;2)未处理细胞对PTH的反应包括从细胞内储存释放Ca2+和细胞外Ca2+的内流;3)用rPTH-(1-34)对这些细胞进行预处理增强了再次刺激激素时对Ca2+内流的依赖性。我们提出,处理过的细胞中PTH刺激的[Ca2+]i升高得以保留,部分原因是cAMP介导的对细胞外Ca2+内流的抑制作用丧失。