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1
Gastrin and D1 dopamine receptor interact to induce natriuresis and diuresis.胃泌素和 D1 多巴胺受体相互作用诱导利钠和利尿。
Hypertension. 2013 Nov;62(5):927-33. doi: 10.1161/HYPERTENSIONAHA.113.01094. Epub 2013 Sep 9.
2
Dopamine and renal function and blood pressure regulation.多巴胺与肾功能和血压调节。
Compr Physiol. 2011 Jul;1(3):1075-117. doi: 10.1002/cphy.c100032.
3
The mosaic theory revisited: common molecular mechanisms coordinating diverse organ and cellular events in hypertension.再探镶嵌理论:协调高血压中多种器官和细胞事件的共同分子机制
J Am Soc Hypertens. 2013 Jan-Feb;7(1):68-74. doi: 10.1016/j.jash.2012.11.007.
4
Novel role of sorting nexin 5 in renal D(1) dopamine receptor trafficking and function: implications for hypertension.SNX5 在肾脏 D1 多巴胺受体转运和功能中的新作用:与高血压的关系。
FASEB J. 2013 May;27(5):1808-19. doi: 10.1096/fj.12-208439. Epub 2012 Nov 29.
5
Sorting nexin 1 loss results in D5 dopamine receptor dysfunction in human renal proximal tubule cells and hypertension in mice.Sorting nexin 1 缺失导致人肾近端小管细胞 D5 多巴胺受体功能障碍和小鼠高血压。
J Biol Chem. 2013 Jan 4;288(1):152-63. doi: 10.1074/jbc.M112.428458. Epub 2012 Nov 14.
6
Dopamine and angiotensin type 2 receptors cooperatively inhibit sodium transport in human renal proximal tubule cells.多巴胺和血管紧张素Ⅱ型受体协同抑制人肾近端小管细胞的钠转运。
Hypertension. 2012 Aug;60(2):396-403. doi: 10.1161/HYPERTENSIONAHA.112.194175. Epub 2012 Jun 18.
7
Regulation of glomerulotubular balance. I. Impact of dopamine on flow-dependent transport.肾小球肾小管平衡的调节。I. 多巴胺对流量依赖型转运的影响。
Am J Physiol Renal Physiol. 2012 Aug 1;303(3):F386-95. doi: 10.1152/ajprenal.00531.2011. Epub 2012 May 2.
8
Dopamine, the kidney, and hypertension.多巴胺、肾脏与高血压。
Curr Hypertens Rep. 2012 Apr;14(2):138-43. doi: 10.1007/s11906-012-0253-z.
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The kidney and hypertension: novel insights from transgenic models.肾脏与高血压:转基因模型的新见解。
Curr Opin Nephrol Hypertens. 2012 Mar;21(2):171-8. doi: 10.1097/MNH.0b013e3283503068.
10
Dopamine and vascular dynamics control: present status and future perspectives.多巴胺与血管动力学调控:现状与未来展望。
Curr Neurovasc Res. 2011 Aug 1;8(3):246-57. doi: 10.2174/156720211796558032.

多巴胺 D₁ 样受体在人肾近端小管细胞和 D₁ 样多巴胺受体基因敲除小鼠中调节 α₁A - 肾上腺素能受体。

Dopamine D₁-like receptors regulate the α₁A-adrenergic receptor in human renal proximal tubule cells and D₁-like dopamine receptor knockout mice.

作者信息

Ennis Riley Charles, Asico Laureano D, Armando Ines, Yang Jian, Feranil Jun B, Jurgens Julie A, Escano Crisanto S, Yu Peiying, Wang Xiaoyan, Sibley David R, Jose Pedro A, Villar Van Anthony M

机构信息

Thomas Jefferson High School for Science and Technology, Alexandria, Virgina;

Division of Nephrology, Department of Medicine, University of Maryland School of Medicine, Baltimore, Maryland;

出版信息

Am J Physiol Renal Physiol. 2014 Dec 1;307(11):F1238-48. doi: 10.1152/ajprenal.00119.2014. Epub 2014 Oct 22.

DOI:10.1152/ajprenal.00119.2014
PMID:25339698
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC4254972/
Abstract

The homeostatic control of blood pressure hinges upon the delicate balance between prohypertensinogenic and antihypertensinogenic systems. D₁-like dopamine receptors [dopamine D₁ and D₅ receptors (D₁Rs and D₅Rs, respectively)] and the α₁A-adrenergic receptor (α₁A-AR) are expressed in the renal proximal tubule and engender opposing effects on Na(+) transport, i.e., natriuresis (via D₁Rs and D5Rs) or antinatriuresis (via α₁A-ARs). We tested the hypothesis that the D₁R/D₅R regulates the α₁A-AR. D₁-like dopamine receptors coimmunoprecipitated, colocalized, and cofractionated with α₁A-ARs in lipid rafts in immortalized human renal proximal tubule cells. Long-term treatment with the D₁R/D₅R agonist fenoldopam resulted in decreased D₁R and D₅R expression but increased α₁A-AR abundance in the plasma membrane. Short-term fenoldopam treatment stimulated the translocation of Na(+)-K(+)-ATPase from the plasma membrane to the cytosol that was partially reversed by an α₁A-AR agonist, which by itself induced Na(+)-K(+)-ATPase translocation from the cytosol to the plasma membrane. The α₁A-AR-specific agonist A610603 also minimized the ability of fenoldopam to inhibit Na(+)-K(+)-ATPase activity. To determine the interaction among D₁Rs, D₅Rs, and α₁A-ARs in vivo, we used phenylephrine and A610603 to decrease Na(+) excretion in several D1-like dopamine receptor knockout mouse strains. Phenylephrine and A61603 treatment resulted in a partial reduction of urinary Na(+) excretion in wild-type mice and its abolition in D1R knockout, D₅R knockout, and D₁R-D₅R double-knockout mice. Our results demonstrate the ability of the D₁-like dopamine receptors to regulate the expression and activity of α₁A-AR. Elucidating the intricacies of the interaction among these receptors is crucial for a better understanding of the crosstalk between anti- and pro-hypertensive systems.

摘要

血压的稳态控制取决于促高血压系统和抗高血压系统之间的微妙平衡。D1样多巴胺受体[多巴胺D1和D5受体(分别为D1Rs和D5Rs)]和α1A肾上腺素能受体(α1A-AR)在肾近端小管中表达,并对Na(+)转运产生相反的作用,即利钠作用(通过D1Rs和D5Rs)或抗利钠作用(通过α1A-ARs)。我们检验了D1R/D5R调节α1A-AR的假说。在永生化的人肾近端小管细胞的脂筏中,D1样多巴胺受体与α1A-ARs进行了共免疫沉淀、共定位和共分级分离。用D1R/D5R激动剂非诺多泮长期处理导致D1R和D5R表达减少,但质膜中α1A-AR丰度增加。短期非诺多泮处理刺激Na(+)-K(+)-ATP酶从质膜向胞质溶胶的转位,这一过程被α1A-AR激动剂部分逆转,而α1A-AR激动剂本身可诱导Na(+)-K(+)-ATP酶从胞质溶胶向质膜的转位。α1A-AR特异性激动剂A610603也使非诺多泮抑制Na(+)-K(+)-ATP酶活性的能力降至最低。为了确定体内D1Rs、D5Rs和α1A-ARs之间的相互作用,我们使用去氧肾上腺素和A610603在几种D1样多巴胺受体敲除小鼠品系中降低Na(+)排泄。去氧肾上腺素和A61603处理导致野生型小鼠尿Na(+)排泄部分减少,而在D1R敲除、D5R敲除和D1R-D5R双敲除小鼠中则完全消除。我们的结果证明了D1样多巴胺受体调节α1A-AR表达和活性的能力。阐明这些受体之间相互作用的复杂性对于更好地理解抗高血压系统和促高血压系统之间的相互作用至关重要。