Law G J, Pachter J A, Thastrup O, Hanley M R, Dannies P S
Department of Pharmacology, Yale University School of Medicine, New Haven, CT 06510.
Biochem J. 1990 Apr 15;267(2):359-64. doi: 10.1042/bj2670359.
Thapsigargin stimulates an increase of cytosolic free Ca2+ concentration [( Ca2+]c) in, and 45Ca2+ efflux from, a clone of GH4C1 pituitary cells. This increase in [Ca2+]c was followed by a lower sustained elevation of [Ca2+]c, which required the presence of extracellular Ca2+, and was not inhibited by a Ca2(+)-channel blocker, nimodipine. Thapsigargin had no effect on inositol phosphate generation. We used thyrotropin-releasing hormone (TRH) to mobilize Ca2+ from an InsP3-sensitive store. Pretreatment with thapsigargin blocked the ability of TRH to cause a transient increase in both [Ca2+]c and 45Ca2+ efflux. The block of TRH-induced Ca2+ mobilization was not caused by a block at the receptor level, because TRH stimulation of InsP3 was not affected by thapsigargin. Rundown of the TRH-releasable store by Ca2(+)-induced Ca2+ release does not appear to account for the action of thapsigargin on the TRH-induced spike in [Ca2+]c, because BAY K 8644, which causes a sustained rise in [Ca2+]c, did not block Ca2+ release caused by TRH. In addition, caffeine, which releases Ca2+ from intracellular stores in other cell types, caused an increase in [Ca2+]c in GH4C1 cells, but had no effect on a subsequent spike in [Ca2+]c induced by TRH or thapsigargin. TRH caused a substantial decrease in the amount of intracellular Ca2+ released by thapsigargin. We conclude that in GH4C1 cells thapsigargin actively discharges an InsP3-releasable pool of Ca2+ and that this mechanism alone causes the block of the TRH-induced increase in [Ca2+]c.
毒胡萝卜素可刺激GH4C1垂体细胞克隆内细胞溶质游离Ca2+浓度[Ca2+]c升高,并促进45Ca2+外流。[Ca2+]c的这种升高之后是[Ca2+]c的较低持续升高,这需要细胞外Ca2+的存在,并且不受Ca2(+)-通道阻滞剂尼莫地平的抑制。毒胡萝卜素对肌醇磷酸生成没有影响。我们使用促甲状腺激素释放激素(TRH)从InsP3敏感储存库中动员Ca2+。用毒胡萝卜素预处理可阻断TRH引起[Ca2+]c和45Ca2+外流瞬时增加的能力。TRH诱导的Ca2+动员的阻断不是由受体水平的阻断引起的,因为毒胡萝卜素不影响TRH对InsP3的刺激。Ca2(+)-诱导的Ca2+释放导致TRH可释放储存库的耗竭似乎不能解释毒胡萝卜素对TRH诱导的[Ca2+]c峰值的作用,因为导致[Ca2+]c持续升高的BAY K 8644不会阻断TRH引起的Ca2+释放。此外,咖啡因可从其他细胞类型的细胞内储存库中释放Ca2+,可使GH4C1细胞中的[Ca2+]c增加,但对随后由TRH或毒胡萝卜素诱导的[Ca2+]c峰值没有影响。TRH可使毒胡萝卜素释放的细胞内Ca2+量大幅减少。我们得出结论,在GH4C1细胞中,毒胡萝卜素可主动释放InsP3可释放的Ca2+池,仅此机制就导致TRH诱导的[Ca2+]c增加被阻断。