Akhter S, Nath S K, Tse C M, Williams J, Zasloff M, Donowitz M
Departments of Medicine and Physiology, The Johns Hopkins University School of Medicine, Baltimore, Maryland 21205, USA.
Am J Physiol. 1999 Jan;276(1):C136-44. doi: 10.1152/ajpcell.1999.276.1.C136.
Squalamine, an endogenous molecule found in the liver and other tissues of Squalus acanthias, has antibiotic properties and causes changes in endothelial cell shape. The latter suggested that its potential targets might include transport proteins that control cell volume or cell shape. The effect of purified squalamine was examined on cloned Na+/H+ exchanger isoforms NHE1, NHE2, and NHE3 stably transfected in PS120 fibroblasts. Squalamine (1-h pretreatment) decreased the maximal velocity of rabbit NHE3 in a concentration-dependent manner (13, 47, and 57% inhibition with 3, 5, and 7 micrograms/ml, respectively) and also increased K'[H+]i. Squalamine did not affect rabbit NHE1 or NHE2 function. The inhibitory effect of squalamine was 1) time dependent, with no effect of immediate addition and maximum effect with 1 h of exposure, and 2) fully reversible. Squalamine pretreatment of the ileum for 60 min inhibited brush-border membrane vesicle Na+/H+ activity by 51%. Further investigation into the mechanism of squalamine's effects showed that squalamine required the COOH-terminal 76 amino acids of NHE3. Squalamine had no cytotoxic effect at the concentrations studied, as indicated by monitoring lactate dehydrogenase release. These results indicate that squalamine 1) is a specific inhibitor of the brush-border NHE isoform NHE3 and not NHE1 or NHE2, 2) acts in a nontoxic and fully reversible manner, and 3) has a delayed effect, indicating that it may influence brush-border Na+/H+ exchanger function indirectly, through an intracellular signaling pathway or by acting as an intracellular modulator.
角鲨胺是一种在内源性分子,存在于棘鲛的肝脏和其他组织中,具有抗生素特性,并能引起内皮细胞形态的变化。后者表明其潜在靶点可能包括控制细胞体积或细胞形状的转运蛋白。研究了纯化的角鲨胺对稳定转染于PS120成纤维细胞中的克隆Na⁺/H⁺交换蛋白亚型NHE1、NHE2和NHE3的影响。角鲨胺(1小时预处理)以浓度依赖性方式降低兔NHE3的最大速度(分别用3、5和7微克/毫升处理时抑制率为13%、47%和57%),并增加K'[H⁺]i。角鲨胺不影响兔NHE1或NHE2的功能。角鲨胺的抑制作用1)具有时间依赖性,即时添加无作用,暴露1小时作用最大,2)完全可逆。用角鲨胺预处理回肠60分钟可使刷状缘膜囊泡Na⁺/H⁺活性抑制51%。对角鲨胺作用机制的进一步研究表明,角鲨胺需要NHE3的COOH末端76个氨基酸。在所研究的浓度下,通过监测乳酸脱氢酶释放表明角鲨胺没有细胞毒性作用。这些结果表明,角鲨胺1)是刷状缘NHE亚型NHE3的特异性抑制剂,而不是NHE1或NHE2的抑制剂,2)以无毒且完全可逆的方式起作用,3)具有延迟效应,表明它可能通过细胞内信号通路或作为细胞内调节剂间接影响刷状缘Na⁺/H⁺交换蛋白的功能。