Woodward D F, Fairbairn C E, Krauss A H, Lawrence R A, Protzman C E
Department of Biological Sciences, Allergan, Inc., Irvine, California, USA.
J Pharmacol Exp Ther. 1995 Apr;273(1):285-7.
The rat colon and Swiss 3T3 cells have been proposed as FP receptor preparations. However, the rank orders of potency for contraction of the rat colon and Ca++ signaling in Swiss 3T3 cells were found to be disparate. Although both appeared to be FP receptor preparations in that PGF2 alpha and FP receptor selective analogs were the most potent agonists, the potency ranking for other PGs and their analogs differed markedly. This presented two alternative major hypotheses for interpreting these data: (1) Swiss 3T3 cells and the rat colon possess different FP receptor subtypes and (2) the rat colon contains a heterogeneous population of prostanoid receptors. To further characterize prostanoid receptor populations in these two preparations, radioligand binding studies were performed with 3H-PGE2 and 3H-17-phenyl-PGF2 alpha. The rank order of potency for inhibition of 3H-PGE2 binding in the rat colon was consistent with EP3 receptor pharmacology. Thus, MB 28767, sulprostone and PGE2 were potent inhibitors, whereas PGF2 alpha, PGD2 and other analogs were substantially less potent. The rank order of potency for inhibition of 3H-17-phenyl-PGF2 alpha binding in the rat colon was consistent with the presence of an FP receptor. Thus, the potency rank order for the natural PGs was PGF2 alpha > PGD2 > PGE2 and among the synthetic analogs only PGF2 alpha analogs were potent competitors. In Swiss 3T3 cells an identical rank order of potency for eliciting a Ca++ transient signal and inhibition of 3H-17-phenyl-PGF2 alpha binding was obtained.(ABSTRACT TRUNCATED AT 250 WORDS)
大鼠结肠和瑞士3T3细胞已被提议作为FP受体制剂。然而,发现大鼠结肠收缩的效力等级顺序与瑞士3T3细胞中的Ca++信号传导的效力等级顺序不同。尽管由于PGF2α和FP受体选择性类似物是最有效的激动剂,两者似乎都是FP受体制剂,但其他PG及其类似物的效力等级明显不同。这提出了两种解释这些数据的主要替代假设:(1)瑞士3T3细胞和大鼠结肠具有不同的FP受体亚型,以及(2)大鼠结肠含有异质性的前列腺素受体群体。为了进一步表征这两种制剂中的前列腺素受体群体,用3H-PGE2和3H-17-苯基-PGF2α进行了放射性配体结合研究。大鼠结肠中抑制3H-PGE2结合的效力等级顺序与EP3受体药理学一致。因此,MB 28767、舒前列素和PGE2是有效的抑制剂,而PGF2α、PGD2和其他类似物的效力则明显较低。大鼠结肠中抑制3H-17-苯基-PGF2α结合的效力等级顺序与存在FP受体一致。因此,天然PG的效力等级顺序为PGF2α>PGD2>PGE2,在合成类似物中,只有PGF2α类似物是有效的竞争者。在瑞士3T3细胞中,引发Ca++瞬时信号和抑制3H-17-苯基-PGF2α结合的效力等级顺序相同。(摘要截短于250字)