Connexin 30 Deficiency Impairs Renal Tubular ATP Release and Pressure Natriuresis
Open Access
- 1 August 2009
- journal article
- research article
- Published by Wolters Kluwer Health in Journal of the American Society of Nephrology
- Vol. 20 (8), 1724-1732
- https://doi.org/10.1681/asn.2008101099
Abstract
In the renal tubule, ATP is an important regulator of salt and water reabsorption, but the mechanism of ATP release is unknown. Several connexin (Cx) isoforms form mechanosensitive, ATP-permeable hemichannels. We localized Cx30 to the nonjunctional apical membrane of cells in the distal nephron and tested whether Cx30 participates in physiologically important release of ATP. We dissected, partially split open, and microperfused cortical collecting ducts from wild-type and Cx30-deficient mice in vitro. We used PC12 cells as ATP biosensors by loading them with Fluo-4/Fura Red to measure cytosolic calcium and positioning them in direct contact with the apical surface of either intercalated or principal cells. ATP biosensor responses, triggered by increased tubular flow or by bath hypotonicity, were approximately three-fold greater when positioned next to intercalated cells than next to principal cells. In addition, these responses did not occur in preparations from Cx30-deficient mice or with purinergic receptor blockade. After inducing step increases in mean arterial pressure by ligating the distal aorta followed by the mesenteric and celiac arteries, urine output increased 4.2-fold in wild-type mice compared with 2.6-fold in Cx30-deficient mice, and urinary Na+ excretion increased 5.2-fold in wild-type mice compared with 2.8-fold in Cx30-deficient mice. Furthermore, Cx30-deficient mice developed endothelial sodium channel–dependent, salt-sensitive elevations in mean arterial pressure. Taken together, we suggest that mechanosensitive Cx30 hemichannels have an integral role in pressure natriuresis by releasing ATP into the tubular fluid, which inhibits salt and water reabsorption.This publication has 52 references indexed in Scilit:
- The Collecting Duct Is the Major Source of Prorenin in DiabetesHypertension, 2008
- Connexin 40 and ATP-dependent intercellular calcium wave in renal glomerular endothelial cellsAmerican Journal of Physiology-Regulatory, Integrative and Comparative Physiology, 2008
- Fluid flow sensing and triggered nucleotide release in epitheliaThe Journal of Physiology, 2008
- Sodium-Dependent Regulation of Renal Amiloride-Sensitive Currents by Apical P2 ReceptorsJournal of the American Society of Nephrology, 2008
- Loss of apical monocilia on collecting duct principal cells impairs ATP secretion across the apical cell surface and ATP-dependent and flow-induced calcium signalsPurinergic Signalling, 2007
- Advances in renal (patho)physiology using multiphoton microscopyKidney International, 2007
- Oscillating fluid flow activation of gap junction hemichannels induces atp release from MLO‐Y4 osteocytesJournal of Cellular Physiology, 2007
- The role of pannexin 1 hemichannels in ATP release and cell–cell communication in mouse taste budsProceedings of the National Academy of Sciences, 2007
- Pannexin 1 in erythrocytes: Function without a gapProceedings of the National Academy of Sciences, 2006
- Expression of NTPDase1 and NTPDase2 in murine kidney: relevance to regulation of P2 receptor signalingAmerican Journal of Physiology-Renal Physiology, 2005