Rebecchi M J, Gerry R H, Gershengorn M C
J Biol Chem. 1982 Mar 25;257(6):2751-3.
Thyrotropin-releasing hormone (TRH) may act to stimulate prolactin secretion by increasing the intracellular free Ca2+ concentration. This notion is supported by the finding that TRH acutely enhances 45Ca2+ efflux from pituitary cells which may reflect alterations in Ca2+ influx or efflux, or both. To differentiate among these possibilities, we measured loss and uptake of nonradioactive Ca2+ by GH3 cells, a cloned strain of rat pituitary cells that produce prolactin, during TRH action using the metallochromic indicator arsenazo III. Cells were perfused in medium containing 2.8 microM Ca2+ and nonradioactive Ca2+ was measured in the perfusion effluent. Under these conditions, there was a sustained loss of Ca2+ from the cells for at least 30 min. TRH caused a transient, marked increase in the amount of Ca2+ released into the medium which occurred in parallel with enhancement in 45Ca2+ efflux and stimulation of prolactin secretion. There was no measurable decrease in Ca2+ concentration in the medium at the onset of the TRH effect which would have been consistent with Ca2+ influx into the cells. Furthermore, an identical response to TRH was observed in cells perfused with medium containing 50 microM verapamil, an agent which blocks Ca2+ influx. In static incubations performed in parallel, TRH caused a decrease in total cellular Ca2+ of 23 +/- 5%. These data provide direct evidence that TRH causes loss of Ca2+ from GH3 cells without causing measurable Ca2+ uptake and support the contention that TRH acts by mobilizing Ca2+ from a sequestered cellular pool (or pools).
促甲状腺激素释放激素(TRH)可能通过增加细胞内游离钙离子浓度来刺激催乳素分泌。这一观点得到了以下发现的支持:TRH可急性增强垂体细胞的45Ca2+外流,这可能反映了钙离子内流或外流的改变,或两者皆有。为了区分这些可能性,我们使用金属显色指示剂偶氮胂III,在TRH作用期间测量了GH3细胞(一种能产生催乳素的大鼠垂体细胞克隆株)对非放射性钙离子的丢失和摄取。细胞在含有2.8 microM钙离子的培养基中灌注,并测量灌注流出物中的非放射性钙离子。在这些条件下,细胞内钙离子持续丢失至少30分钟。TRH导致释放到培养基中的钙离子量短暂、显著增加,这与45Ca2+外流的增强和催乳素分泌的刺激同时发生。在TRH作用开始时,培养基中钙离子浓度没有可测量的降低,而这原本与钙离子流入细胞是一致的。此外,在用含有50 microM维拉帕米(一种阻断钙离子内流的药物)的培养基灌注的细胞中,观察到了对TRH的相同反应。在平行进行的静态培养中,TRH导致细胞总钙离子减少23±5%。这些数据提供了直接证据,表明TRH导致GH3细胞钙离子丢失,而不会引起可测量的钙离子摄取,并支持TRH通过从细胞内储存池(或多个储存池)中动员钙离子起作用的观点。