Literature DB >> 21715471

Regulation of renal NaCl and water transport by the ATP/UTP/P2Y2 receptor system.

Volker Vallon1, Timo Rieg.   

Abstract

Extracellular nucleotides (e.g., ATP) activate ionotropic P2X and metabotropic P2Y receptors in the plasma membrane to regulate and maintain cell function and integrity. This includes the renal tubular and collecting duct system, where the locally released nucleotides act in a paracrine and autocrine way to regulate transport of electrolytes and water and maintain cell volume. A prominent role has been assigned to Gq-coupled P2Y(2) receptors, which are typically activated by both ATP and UTP. Studies in gene knockout mice revealed an antihypertensive activity of P2Y(2) receptors that is linked to vasodilation and an inhibitory influence on renal salt reabsorption. Flow induces apical ATP release in the thick ascending limb, and first evidence indicates an inhibitory influence of P2Y(2) receptor tone on the expression and activity of the Na-K-2Cl cotransporter NKCC2 in this segment. The apical ATP/UTP/P2Y(2) receptor system in the connecting tubule/cortical collecting duct mediates the inhibitory effect of dietary salt on the open probability of the epithelial sodium channel ENaC and inhibits ENaC activity during aldosterone escape. Connexin 30 has been implicated in the luminal release of the ATP involved in the regulation of ENaC. An increase in collecting duct cell volume in response to manipulating water homeostasis increases ATP release. The subsequent activation of P2Y(2) receptors inhibits vasopressin-induced cAMP formation and water reabsorption, which facilitates water excretion and stabilizes cell volume. Thus recent studies have established the ATP/UTP/P2Y(2) receptor system as a relevant regulator of renal salt and water homeostasis and blood pressure regulation. The pathophysiological relevance and therapeutic potential remains to be determined, but dual effects of P2Y(2) receptor activation on both the vasculature and renal salt reabsorption implicate these receptors as potential therapeutic targets in hypertension.

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Year:  2011        PMID: 21715471      PMCID: PMC3174559          DOI: 10.1152/ajprenal.00236.2011

Source DB:  PubMed          Journal:  Am J Physiol Renal Physiol        ISSN: 1522-1466


  105 in total

1.  Cellular localization of P2Y(2) purinoceptor in rat renal inner medulla and lung.

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4.  Endothelium-dependent relaxation evoked by ATP and UTP in the aorta of P2Y2-deficient mice.

Authors:  Pieter-Jan D F Guns; Tim Van Assche; Paul Fransen; Bernard Robaye; Jean-Marie Boeynaems; Hidde Bult
Journal:  Br J Pharmacol       Date:  2006-03       Impact factor: 8.739

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Authors:  Alicia A McDonough; Patrick K K Leong; Li E Yang
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Authors:  Chung-Lin Chou; Ming-Jiun Yu; Eliza M Kassai; Ryan G Morris; Jason D Hoffert; Susan M Wall; Mark A Knepper
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Review 8.  Potential functional roles of extracellular ATP in kidney and urinary tract.

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Journal:  Exp Nephrol       Date:  1998 May-Jun

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Authors:  B K Kishore; N G Carlson; C M Ecelbarger; D E Kohan; C E Müller; R D Nelson; J Peti-Peterdi; Y Zhang
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Authors:  Yue Zhang; Simon C Robson; Kaiya L Morris; Kristina M Heiney; Karen M Dwyer; Bellamkonda K Kishore; Carolyn M Ecelbarger
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Review 5.  ENaCs and ASICs as therapeutic targets.

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Journal:  Purinergic Signal       Date:  2013-11-22       Impact factor: 3.765

7.  Clopidogrel attenuates lithium-induced alterations in renal water and sodium channels/transporters in mice.

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10.  P2Y2 receptor activation inhibits the expression of the sodium-chloride cotransporter NCC in distal convoluted tubule cells.

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