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分娩时 ENaC 介导集合管内皮素-1 产生的流调节。

Na delivery and ENaC mediate flow regulation of collecting duct endothelin-1 production.

机构信息

Division of Nephrology, University of Utah Health Sciences Center, 1900 East, 30 North, Salt Lake City, UT 84132, USA.

出版信息

Am J Physiol Renal Physiol. 2012 May 15;302(10):F1325-30. doi: 10.1152/ajprenal.00034.2012. Epub 2012 Feb 22.

Abstract

Collecting duct (CD) endothelin-1 (ET-1) is an important autocrine inhibitor of Na and water transport. CD ET-1 production is stimulated by extracellular fluid volume expansion and tubule fluid flow, suggesting a mechanism coupling CD Na delivery and ET-1 synthesis. A mouse cortical CD cell line, mpkCCDc14, was subjected to static or flow conditions for 2 h at 2 dyn/cm(2), followed by determination of ET-1 mRNA content. Flow with 300 mosmol/l NaCl increased ET-1 mRNA to 65% above that observed under static conditions. Increasing perfusate osmolarity to 450 mosmol/l with NaCl or Na acetate increased ET-1 mRNA to ∼184% compared with no flow, which was not observed when osmolarity was increased using mannitol or urea. Reducing Na concentration to 150 mosmol/l while maintaining total osmolarity at 300 mosmol/l with urea or mannitol decreased the flow response. Inhibition of epithelial Na channel (ENaC) with amiloride or benzamil abolished the flow response, suggesting involvement of ENaC in flow-regulated ET-1 synthesis. Aldosterone almost doubled the flow response. Since Ca(2+) enhances CD ET-1 production, the involvement of plasma membrane and mitochondrial Na/Ca(2+) exchangers (NCX) was assessed. SEA0400 and KB-R7943, plasma membrane NCX inhibitors, did not affect the flow response. However, CGP37157, a mitochondrial NCX inhibitor, abolished the response. In summary, the current study indicates that increased Na delivery, leading to ENaC-mediated Na entry and mitochondrial NCX activity, is involved in flow-stimulated CD ET-1 synthesis. This constitutes the first report of either ENaC or mitochondrial NCX regulation of an autocrine factor in any biologic system.

摘要

收集管 (CD) 内皮素-1 (ET-1) 是一种重要的内源性抑制物,可抑制钠和水的转运。CD ET-1 的产生受到细胞外液容量扩张和管状液流的刺激,这表明 CD Na 输送和 ET-1 合成之间存在一种机制。将小鼠皮质 CD 细胞系 mpkCCDc14 在 2 dyn/cm(2)下进行 2 小时的静态或流动条件处理,然后测定 ET-1 mRNA 含量。与静态条件相比,流动状态下 300mosmol/l NaCl 使 ET-1 mRNA 增加 65%。用 NaCl 或 Na 乙酸盐将灌注液渗透压增加到 450mosmol/l 时,与无流动相比,ET-1 mRNA 增加到约 184%,而用甘露醇或尿素增加渗透压时则没有观察到这种情况。在保持 300mosmol/l 总渗透压的情况下,将 Na 浓度降低到 150mosmol/l 会降低流动反应。用阿米洛利或苯甲脒抑制上皮钠通道 (ENaC) 可消除流动反应,这表明 ENaC 参与了流动调节的 ET-1 合成。醛固酮使流动反应增加近一倍。由于 Ca(2+) 增强了 CD ET-1 的产生,因此评估了质膜和线粒体 Na/Ca(2+) 交换器 (NCX) 的参与情况。SE A0400 和 KB-R7943 是质膜 NCX 抑制剂,它们不影响流动反应。然而,CGP37157,一种线粒体 NCX 抑制剂,可消除反应。总之,本研究表明,增加的 Na 输送导致 ENaC 介导的 Na 内流和线粒体 NCX 活性,这与流动刺激 CD ET-1 合成有关。这是首次报道在任何生物系统中 ENaC 或线粒体 NCX 调节自分泌因子。

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