Shane Michael Anne, Nofziger Charity, Blazer-Yost Bonnie L
Department of Biology, Indiana University-Purdue University at Indianapolis, USA.
Gen Comp Endocrinol. 2006 May 15;147(1):85-92. doi: 10.1016/j.ygcen.2005.11.010. Epub 2006 Jan 6.
High-resistance epithelia derived from amphibian sources such as frog skin, toad urinary bladder, and the A6 Xenopus laevis kidney cell line have been widely used to elucidate the underlying mechanisms involved in the regulation of vectorial ion transport. More recently, the isolation of high-resistance mammalian cell lines has provided model systems in which to study differences and similarities between the regulation of ion transporter function in amphibian and mammalian renal epithelia. In the present study, we have compared the natriferic (Na+ retaining) responses to aldosterone, insulin, and vasotocin/vasopressin in the A6 and mpkCCDcl4 (mouse principal cells of the kidney cortical collecting duct) cell lines. The functional responses of the epithelial Na+ channel (ENaC) to hormonal stimulation were remarkably similar in both the amphibian and mammalian lines. In addition, insulin- and aldosterone-stimulated, reabsorptive Na+ transport in both cell lines requires the presence of functional PI3-kinase.
源自两栖动物的高电阻上皮组织,如蛙皮、蟾蜍膀胱和非洲爪蟾肾细胞系A6,已被广泛用于阐明参与向量离子转运调节的潜在机制。最近,高电阻哺乳动物细胞系的分离提供了模型系统,用于研究两栖动物和哺乳动物肾上皮中离子转运体功能调节之间的异同。在本研究中,我们比较了A6和mpkCCDcl4(小鼠肾皮质集合管主细胞)细胞系对醛固酮、胰岛素和血管催产素/血管加压素的保钠反应。上皮钠通道(ENaC)对激素刺激的功能反应在两栖动物和哺乳动物细胞系中非常相似。此外,胰岛素和醛固酮刺激的两种细胞系中的重吸收性钠转运都需要功能性PI3激酶的存在。