Mendoza S A, Schneider J A, Lopez-Rivas A, Sinnett-Smith J W, Rozengurt E
J Cell Biol. 1986 Jun;102(6):2223-33. doi: 10.1083/jcb.102.6.2223.
The amphibian tetradecapeptide, bombesin, and structurally related peptides caused a marked increase in ouabain-sensitive 86Rb+ uptake (a measure of Na+/K+ pump activity) in quiescent Swiss 3T3 cells. This effect occurred within seconds after the addition of the peptide and appeared to be mediated by an increase in Na+ entry into the cells. The effect of bombesin on Na+ entry and Na+/K+ pump activity was concentration dependent with half-maximal stimulation occurring at 0.3-0.4 nM. The structurally related peptides litorin, gastrin-releasing peptide, and neuromedin B also stimulated ouabain-sensitive 86Rb+ uptake; the relative potencies of these peptides in stimulating the Na+/K+ pump were comparable to their potencies in increasing DNA synthesis (Zachary, I., and E. Rozengurt, 1985, Proc. Natl. Acad. Sci. USA., 82:7616-7620). Bombesin increased Na+ influx, at least in part, through an Na+/H+ antiport. The peptide augmented intracellular pH and this effect was abolished in the absence of extracellular Na+. In addition to monovalent ion transport, bombesin and the structurally related peptides rapidly increased the efflux of 45Ca2+ from quiescent Swiss 3T3 cells. This Ca2+ came from an intracellular pool and the efflux was associated with a 50% decrease in total intracellular Ca2+. The peptides also caused a rapid increase in cytosolic free calcium concentration. Prolonged pretreatment of Swiss 3T3 cells with phorbol dibutyrate, which causes a loss of protein kinase C activity (Rodriguez-Pena, A., and E. Rozengurt, 1984, Biochem. Biophys. Res. Commun., 120:1053-1059), greatly decreased the stimulation of 86Rb+ uptake and Na+ entry by bombesin implicating this phosphotransferase system in the mediation of part of these responses to bombesin. Since some activation of monovalent ion transport by bombesin was seen in phorbol dibutyrate-pretreated cells, it is likely that the peptide also stimulates monovalent ion transport by a second mechanism.
两栖类十四肽铃蟾肽及其结构相关肽可使静止的瑞士3T3细胞中哇巴因敏感的86Rb+摄取(一种Na+/K+泵活性的指标)显著增加。该效应在添加肽后数秒内即可出现,且似乎是由细胞内Na+进入增加介导的。铃蟾肽对Na+进入和Na+/K+泵活性的影响呈浓度依赖性,半数最大刺激浓度出现在0.3 - 0.4 nM。结构相关肽促胃液素释放肽、蛙皮素和神经降压素B也能刺激哇巴因敏感的86Rb+摄取;这些肽刺激Na+/K+泵的相对效能与其促进DNA合成的效能相当(扎卡里,I.,和E. 罗曾古特,1985年,《美国国家科学院院刊》,82:7616 - 7620)。铃蟾肽至少部分通过Na+/H+反向转运体增加Na+内流。该肽使细胞内pH值升高,且在无细胞外Na+时此效应消失。除了单价离子转运外,铃蟾肽及其结构相关肽还能迅速增加静止的瑞士3T3细胞中45Ca2+的外流。这种Ca2+来自细胞内池,外流与细胞内总Ca2+减少50%相关。这些肽还能使胞质游离钙浓度迅速升高。用佛波酯二丁酸盐对瑞士3T3细胞进行长时间预处理,可导致蛋白激酶C活性丧失(罗德里格斯 - 佩尼亚,A.,和E. 罗曾古特,1984年,《生物化学与生物物理学研究通讯》,120:1053 - 1059),这大大降低了铃蟾肽对86Rb+摄取和Na+进入的刺激作用,表明该磷酸转移酶系统参与介导了对铃蟾肽的部分这些反应。由于在经佛波酯二丁酸盐预处理的细胞中也观察到铃蟾肽对单价离子转运有一定激活作用,所以该肽很可能还通过第二种机制刺激单价离子转运。