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Epac1-/- 和 Epac2-/- 小鼠表现出上皮钠通道调节功能缺陷和尿钠保藏受损。

Epac1-/- and Epac2-/- mice exhibit deficient epithelial Na+ channel regulation and impaired urinary Na+ conservation.

机构信息

Department of Integrative Biology and Pharmacology, The University of Texas Health Science Center at Houston, Houston, Texas, USA.

Department of Physiology, Medical College of Wisconsin, Milwaukee, Wisconsin, USA.

出版信息

JCI Insight. 2022 Feb 8;7(3):e145653. doi: 10.1172/jci.insight.145653.

DOI:10.1172/jci.insight.145653
PMID:34914636
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC8855822/
Abstract

Exchange proteins directly activated by cAMP (Epacs) are abundantly expressed in the renal tubules. We used genetic and pharmacological tools in combination with balance, electrophysiological, and biochemical approaches to examine the role of Epac1 and Epac2 in renal sodium handling. We demonstrate that Epac1-/- and Epac2-/- mice exhibit a delayed anti-natriuresis to dietary sodium restriction despite augmented aldosterone levels. This was associated with a significantly lower response to the epithelial Na+ channel (ENaC) blocker amiloride, reduced ENaC activity in split-opened collecting ducts, and defective posttranslational processing of α and γENaC subunits in the KO mice fed with a Na+-deficient diet. Concomitant deletion of both isoforms led to a marginally greater natriuresis but further increased aldosterone levels. Epac2 blocker ESI-05 and Epac1&2 blocker ESI-09 decreased ENaC activity in Epac WT mice kept on the Na+-deficient diet but not on the regular diet. ESI-09 injections led to natriuresis in Epac WT mice on the Na+-deficient diet, which was caused by ENaC inhibition. In summary, our results demonstrate similar but nonredundant actions of Epac1 and Epac2 in stimulation of ENaC activity during variations in dietary salt intake. We speculate that inhibition of Epac signaling could be instrumental in treatment of hypertensive states associated with ENaC overactivation.

摘要

环磷酸腺苷(cAMP)直接激活交换蛋白(Epac)在肾小管中大量表达。我们使用遗传和药理学工具结合平衡、电生理和生化方法,研究 Epac1 和 Epac2 在肾脏钠处理中的作用。我们证明 Epac1-/- 和 Epac2-/- 小鼠尽管醛固酮水平升高,但对饮食钠限制的抗利尿作用延迟。这与对上皮钠通道(ENaC)阻滞剂阿米洛利的反应显著降低、分离的收集管中 ENaC 活性降低以及 KO 小鼠在缺钠饮食中α和γENaC 亚基的翻译后加工缺陷有关。两种同工型的同时缺失导致利尿作用略有增加,但进一步增加了醛固酮水平。Epac2 阻滞剂 ESI-05 和 Epac1&2 阻滞剂 ESI-09 在维持在缺钠饮食的 Epac WT 小鼠中降低了 ENaC 活性,但在常规饮食中没有降低。ESI-09 注射在维持在缺钠饮食的 Epac WT 小鼠中导致利尿,这是由 ENaC 抑制引起的。总之,我们的结果表明,Epac1 和 Epac2 在饮食盐摄入变化时刺激 ENaC 活性方面具有相似但非冗余的作用。我们推测抑制 Epac 信号可能对治疗与 ENaC 过度激活相关的高血压状态具有重要意义。

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Epac1 inhibition ameliorates pathological angiogenesis through coordinated activation of Notch and suppression of VEGF signaling.Epac1 抑制通过协调激活 Notch 和抑制 VEGF 信号转导改善病理性血管生成。
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Blood pressure effects of sodium transport along the distal nephron.沿远端肾单位的钠转运对血压的影响。
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