Abstract
1 Proliferative effects of CCK peptides have been examined in rat anterior pituitary GH3 cells, which express CCK2 receptors. 2 CCK-8s, gastrin(l-17) and its glycine-extended precursor G(l-17)-Gly, previously reported to cause proliferation via putative novel sites on AR4-2J and Swiss 3T3 cells, elicited significant dose dependent increases of similar magnitude in [3H]thymidine incorporation over 3 days in serum-free medium of 39+10% (7><0.01, // = 20), 37±8% (P<0.01, >i = 27) and 41 ±6% (P<0.01, ;j = 36) respectively. 3 CCK-8s and gastrin potentially stimulated mitogenesis (EC50 values 0.12 nM and 3.0 nM respectively), whilst G-GIy displayed similar efficacy but markedly lower potency. L-365,260 consistently blocked each peptide. The CCK2 receptor affinity of G-Gly in GH3 cells was 1.09 /IM (1.01;1.17, w = 6) and 5.53 /IM (3.71;5.99, ;; = 4) in guinea-pig cortex. 4 1 /IM G-Gly weakly stimulated Ca2+ increase, eliciting a 104±21% increase over basal Ca2+ levels, and was blocked by 1 /iM L-365,260 whilst CCK-8s (100 nM) produced a much larger Ca2+ response (331 + 14%). 5 Insulin dose dependently enhanced proliferative effects of CCK-8s with a maximal leftwards shift of the CCK-8s curve at 100 ng ml1 (17 nM) (EC50 decreased 500 fold, from 0.1 nM to 0.2 pM; /><0.0001). 10/ig ml1 insulin was supramaximal reducing the EC50 to 5 pM (/>=0.027) whilst 1 ngrnl1 insulin was ineffective. Insulin weakly displaced [125I]BHCCK binding to GH3 CCK2 receptors (IC50 3.6 /IM). 6 Results are consistent with mediation of G-Gly effects via CCK2 receptors in GH3 cells and reinforce the role of CCK2 receptors in control of cell growth. Effects of insulin in enhancing CCK proliferative potency may suggest that CCK2 and insulin receptors converge on common intracellular targets and indicates that mitogenic stimuli are influenced by the combination of extracellular factors present. © 1999 Stockton Press All rights reserved.
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Smith, A. J., & McKernan, R. M. (1999). Proliferative effects of cholecystokinin in GH3 pituitary cells mediated by CCK2 receptors and potentiated by insulin. British Journal of Pharmacology, 126(1), 79–86. https://doi.org/10.1038/sj.bjp.0702271
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