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本文引用的文献

1
Intracellular cAMP Sensor EPAC: Physiology, Pathophysiology, and Therapeutics Development.细胞内 cAMP 传感器 EPAC:生理学、病理生理学和治疗学的发展。
Physiol Rev. 2018 Apr 1;98(2):919-1053. doi: 10.1152/physrev.00025.2017.
2
Renal tubular NHE3 is required in the maintenance of water and sodium chloride homeostasis.维持水和氯化钠稳态需要肾小管NHE3。
Kidney Int. 2017 Aug;92(2):397-414. doi: 10.1016/j.kint.2017.02.001. Epub 2017 Apr 3.
3
Exchange proteins directly activated by cAMP (EPACs): Emerging therapeutic targets.环磷酸腺苷直接激活的交换蛋白(EPACs):新兴的治疗靶点。
Bioorg Med Chem Lett. 2017 Apr 15;27(8):1633-1639. doi: 10.1016/j.bmcl.2017.02.065. Epub 2017 Feb 27.
4
EPAC1 activation by cAMP stabilizes CFTR at the membrane by promoting its interaction with NHERF1.环磷酸腺苷(cAMP)激活的EPAC1通过促进囊性纤维化跨膜传导调节因子(CFTR)与埃兹蛋白、根蛋白和膜突蛋白1(NHERF1)的相互作用,使其在细胞膜上保持稳定。
J Cell Sci. 2016 Jul 1;129(13):2599-612. doi: 10.1242/jcs.185629. Epub 2016 May 20.
5
Cyclic AMP Sensor EPAC Proteins and Their Role in Cardiovascular Function and Disease.环腺苷酸传感器 EPAC 蛋白及其在心血管功能和疾病中的作用。
Circ Res. 2016 Mar 4;118(5):881-97. doi: 10.1161/CIRCRESAHA.115.306529.
6
Defective Store-Operated Calcium Entry Causes Partial Nephrogenic Diabetes Insipidus.储存性钙内流缺陷导致部分性肾性尿崩症。
J Am Soc Nephrol. 2016 Jul;27(7):2035-48. doi: 10.1681/ASN.2014121200. Epub 2015 Nov 16.
7
Transgenic Restoration of Urea Transporter A1 Confers Maximal Urinary Concentration in the Absence of Urea Transporter A3.在缺乏尿素转运蛋白A3的情况下,尿素转运蛋白A1的转基因恢复赋予最大尿浓缩能力。
J Am Soc Nephrol. 2016 May;27(5):1448-55. doi: 10.1681/ASN.2014121267. Epub 2015 Sep 25.
8
Exchange protein directly activated by cAMP encoded by the mammalian rapgef3 gene: Structure, function and therapeutics.哺乳动物rapgef3基因编码的cAMP直接激活的交换蛋白:结构、功能与治疗学
Gene. 2015 Oct 10;570(2):157-67. doi: 10.1016/j.gene.2015.06.063. Epub 2015 Jun 26.
9
Pathophysiology, diagnosis and management of nephrogenic diabetes insipidus.肾源性尿崩症的病理生理学、诊断和治疗。
Nat Rev Nephrol. 2015 Oct;11(10):576-88. doi: 10.1038/nrneph.2015.89. Epub 2015 Jun 16.
10
Furosemide-induced urinary acidification is caused by pronounced H+ secretion in the thick ascending limb.速尿引起的尿液酸化是由髓袢升支粗段显著的氢离子分泌所致。
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缺乏 Epac1 或 Epac2 的小鼠的尿浓缩缺陷。

Urinary concentrating defect in mice lacking Epac1 or Epac2.

机构信息

Department of Physiology, Medical College of Georgia, Augusta University, Augusta, Georgia, USA.

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

出版信息

FASEB J. 2019 Feb;33(2):2156-2170. doi: 10.1096/fj.201800435R. Epub 2018 Sep 25.

DOI:10.1096/fj.201800435R
PMID:30252533
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC6338637/
Abstract

cAMP is a universal second messenger regulating a plethora of processes in the kidney. Two downstream effectors of cAMP are PKA and exchange protein directly activated by cAMP (Epac), which, unlike PKA, is often linked to elevation of [Ca]. While both Epac isoforms (Epac1 and Epac2) are expressed along the nephron, their relevance in the kidney remains obscure. We combined ratiometric calcium imaging with quantitative immunoblotting, immunofluorescent confocal microscopy, and balance studies in mice lacking Epac1 or Epac2 to determine the role of Epac in renal water-solute handling. Epac1 and Epac2 mice developed polyuria despite elevated arginine vasopressin levels. We did not detect major deficiencies in arginine vasopressin [Ca] signaling in split-opened collecting ducts or decreases in aquaporin water channel type 2 levels. Instead, sodium-hydrogen exchanger type 3 levels in the proximal tubule were dramatically reduced in Epac1 and Epac2 mice. Water deprivation revealed persisting polyuria, impaired urinary concentration ability, and augmented urinary excretion of Na and urea in both mutant mice. In summary, we report a nonredundant contribution of Epac isoforms to renal function. Deletion of Epac1 and Epac2 decreases sodium-hydrogen exchanger type 3 expression in the proximal tubule, leading to polyuria and osmotic diuresis.-Cherezova, A., Tomilin, V., Buncha, V., Zaika, O., Ortiz, P. A., Mei, F., Cheng, X., Mamenko, M., Pochynyuk, O. Urinary concentrating defect in mice lacking Epac1 or Epac2.

摘要

环磷酸腺苷 (cAMP) 是一种普遍的第二信使,调节肾脏中的多种过程。cAMP 的两个下游效应物是蛋白激酶 A (PKA) 和 cAMP 直接激活的交换蛋白 (Epac),与 PKA 不同,Epac 通常与 [Ca] 的升高有关。虽然 Epac 的两种同工型 (Epac1 和 Epac2) 都在肾单位中表达,但它们在肾脏中的相关性尚不清楚。我们结合了比率钙成像与定量免疫印迹、免疫荧光共聚焦显微镜和缺乏 Epac1 或 Epac2 的小鼠的平衡研究,以确定 Epac 在肾脏水溶质处理中的作用。尽管血管加压素水平升高,Epac1 和 Epac2 小鼠仍出现多尿。我们没有在分离的集合管中检测到血管加压素 [Ca] 信号的主要缺陷,也没有发现水通道蛋白 2 水平降低。相反,Epac1 和 Epac2 小鼠的近端肾小管中钠-氢交换器 3 水平显著降低。水剥夺揭示了持续的多尿、受损的尿浓缩能力以及两种突变小鼠尿液中 Na 和尿素的排泄增加。总之,我们报告了 Epac 同工型对肾功能的非冗余贡献。Epac1 和 Epac2 的缺失减少了近端肾小管中钠-氢交换器 3 的表达,导致多尿和渗透性利尿。-Cher ezova, A., Tomilin, V., Buncha, V., Zaika, O., Ortiz, P. A., Mei, F., Cheng, X., Mamenko, M., Pochynyuk, O. 缺乏 Epac1 或 Epac2 的小鼠的尿浓缩缺陷。