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水合及脱水大鼠髓质内层中P2Y2受体mRNA和蛋白表达发生改变:与集合管功能的抗利尿激素非依赖性调节的相关性

P2Y2 receptor mRNA and protein expression is altered in inner medullas of hydrated and dehydrated rats: relevance to AVP-independent regulation of IMCD function.

作者信息

Kishore Bellamkonda K, Krane Carissa M, Miller R Lance, Shi Huihui, Zhang Ping, Hemmert Andrew, Sun Rujia, Nelson Raoul D

机构信息

Department of Medicine, University of Utah Health Sciences Center, Salt Lake City, UT 84148, USA.

出版信息

Am J Physiol Renal Physiol. 2005 Jun;288(6):F1164-72. doi: 10.1152/ajprenal.00199.2004. Epub 2005 Feb 1.

Abstract

Arginine vasopressin (AVP), acting through a cAMP second messenger system, regulates osmotic water permeability (Pf) of the collecting duct. In the collecting duct, the activities of cAMP and phosphonositides (PI) are mutually inhibitory. The P2Y2 receptor (P2Y2-R) is a G protein-coupled extracellular nucleotide receptor associated with PI signaling pathway. Previously, we showed that P2Y2-R is expressed in inner medullary collecting duct (IMCD) of rat, and its agonist (ATP/UTP) activation decreased AVP-induced Pf and resulted in enhanced production of prostaglandin E2. Hydrated and dehydrated states are associated with alterations in the circulating levels of AVP, expression and/or subcellular distribution of AVP-regulated aquaporin-2 water channel in IMCD and thus Pf of IMCD. We hypothesized that altered expression and/or signaling via P2Y2-R may also modulate IMCD function in these conditions. Sprague-Dawley rats were subjected to dehydration by water deprivation (48 h) or hydration (48 or 96 h) by providing sucrose water. Hydration or dehydration resulted in marked alterations in mRNA expression (Northern blot analysis and real-time RT-PCR) and protein abundance (Western blot analysis) of P2Y2-R, with hydrated rats showing significantly higher levels compared with dehydrated rats. Sequential hydration and dehydration experiments also revealed that the regulated expression profiles of P2Y2-R mRNA and protein are discordant. Conversely, the expression of V2-R mRNA remained unaltered during hydration and dehydration. Because virtually all renal cells release ATP in a regulated fashion, the observed alterations in P2Y2-R expression in the inner medulla in hydrated and dehydrated states may constitute a novel mechanism of purinergic modulation of IMCD function.

摘要

精氨酸加压素(AVP)通过环磷酸腺苷(cAMP)第二信使系统发挥作用,调节集合管的渗透水通透性(Pf)。在集合管中,cAMP和磷酸肌醇(PI)的活性相互抑制。P2Y2受体(P2Y2-R)是一种与PI信号通路相关的G蛋白偶联细胞外核苷酸受体。此前,我们发现P2Y2-R在大鼠肾内髓集合管(IMCD)中表达,其激动剂(ATP/UTP)激活会降低AVP诱导的Pf,并导致前列腺素E2生成增加。水合和脱水状态与AVP循环水平的改变、IMCD中AVP调节的水通道蛋白-2水通道的表达和/或亚细胞分布以及IMCD的Pf相关。我们推测,在这些情况下,P2Y2-R表达和/或信号传导的改变也可能调节IMCD的功能。将Sprague-Dawley大鼠通过禁水(48小时)进行脱水,或通过提供蔗糖水进行水合(48或96小时)。水合或脱水导致P2Y2-R的mRNA表达(Northern印迹分析和实时逆转录聚合酶链反应)和蛋白质丰度(蛋白质印迹分析)发生显著改变,水合大鼠的水平明显高于脱水大鼠。连续水合和脱水实验还表明,P2Y2-R mRNA和蛋白质的调节表达谱不一致。相反,V2-R mRNA的表达在水合和脱水过程中保持不变。由于几乎所有肾细胞都以一种受调节的方式释放ATP,因此在水合和脱水状态下肾内髓中观察到的P2Y2-R表达改变可能构成嘌呤能调节IMCD功能的一种新机制。

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