Kort J J, Koch G
Department of Molecular Biology, University of Hamburg, Federal Republic of Germany.
J Cell Physiol. 1990 Nov;145(2):253-61. doi: 10.1002/jcp.1041450209.
We have previously reported on the biochemical properties of a Na+,K+,2Cl-cotransport system in HeLa cells and here we deal with aspects of its physiological regulation. Na+,K+,2Cl-cotransport in HeLa cells was studied by 86Rb+ influx and 86Rb+/22Na+ efflux measurements. The effects of rat atrial natriuretic peptide (ANP), isoproterenol, and amino acids on 86Rb+ flux, mediated by the bumetanide-sensitive Na+,K+,2Cl-cotransport system and the ouabain-sensitive Na+/K(+)-pump, were investigated. ANP reduced bumetanide-sensitive 86Rb+ influx under isotonic as well as under hypertonic conditions. Similar decrease of bumetanide-sensitive 86Rb+ influx was observed in the presence of 8-bromo-cGMP, while neither isoproterenol as a beta-receptor agonist nor 8-bromo-cAMP-could alter bumetanide-sensitive 86Rb+ influx. Furthermore, efflux of 86Rb+ and 22Na+ was greatly reduced in the presence of bumetanide and ANP. Together with our recent findings, showing functionally active, high affinity receptors for ANP on HeLa cells (Kort and Koch, Biochim. Biophys. Res. Commun. 168: 148-154, 1990), this study indicates that ANP participates in the regulation of the Na+,K+,2Cl-cotransport system in HeLa cells. Further measurements revealed that amino acids as present in the growth medium (Joklik's minimal essential medium) and the amino acid derivative alpha-methyl-aminoisobutyric acid (metAIB, 1 and 5 mM, respectively) also reduced Na+,K+,2Cl-cotransport-mediated 86Rb+ uptake and diminished the stimulatory effect of hypertonicity on the contransporter. In addition, the Na+/K(+)-pump was markedly stimulated in the presence of amino acids, while neither ANP and 8-Br-GMP nor isoproterenol and 8-Br-cAMP had a significant effect on the activity of the Na+/K(+)-pump.
我们之前报道过HeLa细胞中Na⁺、K⁺、2Cl⁻协同转运系统的生化特性,在此我们探讨其生理调节方面。通过⁸⁶Rb⁺内流和⁸⁶Rb⁺/²²Na⁺外流测量研究了HeLa细胞中的Na⁺、K⁺、2Cl⁻协同转运。研究了大鼠心房利钠肽(ANP)、异丙肾上腺素和氨基酸对由布美他尼敏感的Na⁺、K⁺、2Cl⁻协同转运系统和哇巴因敏感的Na⁺/K⁺泵介导的⁸⁶Rb⁺通量的影响。在等渗和高渗条件下,ANP均降低了布美他尼敏感的⁸⁶Rb⁺内流。在8-溴-cGMP存在的情况下,观察到布美他尼敏感的⁸⁶Rb⁺内流有类似程度的降低,而β受体激动剂异丙肾上腺素和8-溴-cAMP均不能改变布美他尼敏感的⁸⁶Rb⁺内流。此外,在布美他尼和ANP存在的情况下,⁸⁶Rb⁺和²²Na⁺的外流大大减少。结合我们最近的研究结果,即显示HeLa细胞上存在功能活跃的ANP高亲和力受体(Kort和Koch,《生物化学与生物物理研究通讯》168: 148 - 154, 1990),本研究表明ANP参与HeLa细胞中Na⁺、K⁺、2Cl⁻协同转运系统的调节。进一步的测量表明,生长培养基(乔克利克最低必需培养基)中存在的氨基酸以及氨基酸衍生物α-甲基-氨基异丁酸(分别为1 mM和5 mM的metAIB)也降低了Na⁺、K⁺、2Cl⁻协同转运介导的⁸⁶Rb⁺摄取,并减弱了高渗对协同转运体的刺激作用。此外,在氨基酸存在的情况下,Na⁺/K⁺泵受到显著刺激,而ANP和8-溴-GMP以及异丙肾上腺素和8-溴-cAMP对Na⁺/K⁺泵的活性均无显著影响。