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醛固酮和血管加压素对 MDCK-C11 细胞 H+-ATPases 的差异调节。

Differential regulation of H+-ATPases in MDCK-C11 cells by aldosterone and vasopressin.

机构信息

Department of Physiology, Division of Biological Sciences, Federal University of Paraná (UFPR), Paraná, Brazil.

出版信息

Can J Physiol Pharmacol. 2009 Sep;87(9):653-65. doi: 10.1139/y09-057.

Abstract

The objective of the present work was to characterize the biochemical activity of the proton pumps present in the C11 clone of Madin-Darby canine kidney (MDCK) cells, akin to intercalated cells of the collecting duct, as well as to study their regulation by hormones like aldosterone and vasopressin. MDCK-C11 cells from passages 78 to 86 were utilized. The reaction to determine H+-ATPase activity was started by addition of cell homogenates to tubes contained the assay medium. The inorganic phosphate (P(i)) released was determined by a colorimetric method modified from that described by Fiske and Subbarow. Changes in intracellular calcium concentration in the cells was determined using the Ca2+-sensing dye fluo-4 AM. Homogenates of MDCK-C11 cells present a bafilomycin-sensitive activity (vacuolar H+-ATPase), and a vanadate-sensitive activity (H+/K+-ATPase). The bafilomycin-sensitive activity showed a pH optimum of 6.12. ATPase activity was also stimulated in a dose-dependent fashion as K+ concentration was increased between 0 and 50 mmol x L(-1), with an apparent K(m) for the release of P(i) of 0.13 mmol x L(-1) and Vmax of 22.01 nmol x mg(-1) x min(-1). Incubation of cell monolayers with 10(-8) mol x L(-1) aldosterone for 24 h significantly increased vacuolar H+-ATPase activity, an effect prevented by 10(-5) mol x L(-1) spironolactone. Vacuolar H+-ATPase activity was also stimulated by 10(-11) mol x L(-1) vasopressin, an effect prevented by a V1 receptor-specific antagonist. This dose of vasopressin determined a sustained rise of cytosolic ionized calcium. We conclude that (i) homogenates of MDCK-C11 cells present a bafilomycin-sensitive (H+-ATPase) activity and a vanadate-sensitive (H+/K+-ATPase) activity, and (ii) vacuolar H+-ATPase activity is activated by aldosterone through a genomic pathway and by vasopressin through V1 receptors.

摘要

本研究旨在研究 Madin-Darby 犬肾 (MDCK) 细胞 C11 克隆中质子泵的生化活性,类似于集合管中的闰细胞,以及研究它们对醛固酮和血管加压素等激素的调节。使用了传代 78 至 86 的 MDCK-C11 细胞。通过向含有测定培养基的试管中加入细胞匀浆开始测定 H+-ATP 酶活性的反应。通过从 Fiske 和 Subbarow 描述的方法修改的比色法测定释放的无机磷酸盐 (P(i))。使用 Ca2+ 敏感染料 fluo-4 AM 测定细胞内钙离子浓度的变化。MDCK-C11 细胞的匀浆呈现出巴弗洛霉素敏感的活性(液泡 H+-ATP 酶)和钒酸盐敏感的活性(H+/K+-ATP 酶)。巴弗洛霉素敏感的活性在 pH6.12 时表现出最佳活性。ATP 酶活性也呈剂量依赖性增加,随着 K+浓度在 0 至 50mmol x L(-1) 之间增加,释放 P(i) 的表观 K(m)为 0.13mmol x L(-1),Vmax 为 22.01nmol x mg(-1) x min(-1)。用 10(-8)mol x L(-1) 醛固酮孵育细胞单层 24 小时显著增加液泡 H+-ATP 酶活性,此效应可被 10(-5)mol x L(-1) 螺内酯阻止。10(-11)mol x L(-1) 血管加压素也刺激液泡 H+-ATP 酶活性,此效应可被 V1 受体特异性拮抗剂阻止。此剂量的血管加压素确定了细胞溶质游离钙离子的持续升高。我们得出结论:(i)MDCK-C11 细胞的匀浆呈现出巴弗洛霉素敏感(H+-ATP 酶)活性和钒酸盐敏感(H+/K+-ATP 酶)活性,以及(ii)液泡 H+-ATP 酶活性通过基因组途径被醛固酮激活,通过 V1 受体被血管加压素激活。

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