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Purinergic signaling is enhanced in the absence of UT‐A1 and UT‐A3

机译:在没有UT-A1和UT-A3的情况下嘌呤能信号传递增强

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摘要

ATP is an important paracrine regulator of renal tubular water and urea transport. The activity of P2Y2, the predominant P2Y receptor of the medullary collecting duct, is mediated by ATP, and modulates urinary concentration. To investigate the role of purinergic signaling in the absence of urea transport in the collecting duct, we studied wild‐type (WT) and UT‐A1/A3 null (UT‐A1/A3 KO) mice in metabolic cages to monitor urine output, and collected tissue samples for analysis. We confirmed that UT‐A1/A3 KO mice are polyuric, and concurrently observed lower levels of urinary cAMP as compared to WT, despite elevated serum vasopressin (AVP) levels. Because P2Y2 inhibits AVP‐stimulated transport by dampening cAMP synthesis, we suspected that, similar to other models of AVP‐resistant polyuria, purinergic signaling is increased in UT‐A1/A3 KO mice. In fact, we observed that both urinary ATP and purinergic‐mediated prostanoid (PGE2) levels were elevated. Collectively, our data suggest that the reduction of medullary osmolality due to the lack of UT‐A1 and UT‐A3 induces an AVP‐resistant polyuria that is possibly exacerbated by, or at least correlated with, enhanced purinergic signaling.
机译:ATP是肾小管水和尿素运输的重要旁静脉调节剂。 P2Y2的活性,髓质收集管道的主要P2Y受体,由ATP介导,并调节尿液浓度。为了探讨嘌呤能信号传导在收集管道中没有尿素输送中的作用,我们研究了野生型(WT)和UT-A1 / A3 Null(UT-A1 / A3 KO)小鼠在代谢笼中监测尿量,并收集组织样品进行分析。我们证实,尽管血清加压素(AVP)水平升高,但是与WT相比,UT-A1 / A3 KO小鼠是多尿的,并且同时观察到WT的尿阵较低。因为P2Y2通过阻尼CAMP合成抑制AVP刺激的运输,所以我们怀疑,类似于其他模型的AVP抗性聚尿,UT-A1 / A3 KO小鼠中的嘌呤能信号传递增加。实际上,我们观察到尿ATP和嘌呤能介导的前列腺醇(PGE2)水平升高。集体,我们的数据表明,由于缺乏UT-A1和UT-A3,髓质渗透性的减少诱导了一种抗性聚尿,其可能加剧或至少与增强的嘌呤能信号传导相加或至少相关。

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