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血压升高与原发性醛固酮增多症以及BK通道缺陷小鼠的血管舒张功能受损有关。

Elevated blood pressure linked to primary hyperaldosteronism and impaired vasodilation in BK channel-deficient mice.

作者信息

Sausbier Matthias, Arntz Claudia, Bucurenciu Iancu, Zhao Hong, Zhou Xiao-Bo, Sausbier Ulrike, Feil Susanne, Kamm Simone, Essin Kyrill, Sailer Claudia A, Abdullah Usamah, Krippeit-Drews Peter, Feil Robert, Hofmann Franz, Knaus Hans-Günther, Kenyon Chris, Shipston Michael J, Storm Johan F, Neuhuber Winfried, Korth Michael, Schubert Rudolf, Gollasch Maik, Ruth Peter

机构信息

Pharmakologie und Toxikologie, Pharmazeutisches Institut der Universität Tübingen, Tübingen, Germany.

出版信息

Circulation. 2005 Jul 5;112(1):60-8. doi: 10.1161/01.CIR.0000156448.74296.FE. Epub 2005 May 2.

Abstract

BACKGROUND

Abnormally elevated blood pressure is the most prevalent risk factor for cardiovascular disease. The large-conductance, voltage- and Ca2+-dependent K+ (BK) channel has been proposed as an important effector in the control of vascular tone by linking membrane depolarization and local increases in cytosolic Ca2+ to hyperpolarizing K+ outward currents. However, the BK channel may also affect blood pressure by regulating salt and fluid homeostasis, particularly by adjusting the renin-angiotensin-aldosterone system.

METHODS AND RESULTS

Here we report that deletion of the pore-forming BK channel alpha subunit leads to a significant blood pressure elevation resulting from hyperaldosteronism accompanied by decreased serum K+ levels as well as increased vascular tone in small arteries. In smooth muscle from small arteries, deletion of the BK channel leads to a depolarized membrane potential, a complete lack of membrane hyperpolarizing spontaneous K+ outward currents, and an attenuated cGMP vasorelaxation associated with a reduced suppression of Ca2+ transients by cGMP. The high level of BK channel expression observed in wild-type adrenal glomerulosa cells, together with unaltered serum renin activities and corticotropin levels in mutant mice, suggests that the hyperaldosteronism results from abnormal adrenal cortical function in BK(-/-) mice.

CONCLUSIONS

These results identify previously unknown roles of BK channels in blood pressure regulation and raise the possibility that BK channel dysfunction may underlie specific forms of hyperaldosteronism.

摘要

背景

血压异常升高是心血管疾病最常见的危险因素。大电导、电压和钙依赖性钾(BK)通道被认为是控制血管张力的重要效应器,它通过将膜去极化和胞质钙局部增加与超极化钾外向电流联系起来。然而,BK通道也可能通过调节盐和液体平衡,特别是通过调节肾素-血管紧张素-醛固酮系统来影响血压。

方法与结果

我们在此报告,孔形成性BK通道α亚基的缺失导致显著的血压升高,这是由醛固酮增多症引起的,伴有血清钾水平降低以及小动脉血管张力增加。在小动脉平滑肌中,BK通道的缺失导致膜电位去极化,完全缺乏膜超极化自发性钾外向电流,以及cGMP血管舒张减弱,这与cGMP对钙瞬变的抑制作用降低有关。在野生型肾上腺球状带细胞中观察到的高水平BK通道表达,以及突变小鼠血清肾素活性和促肾上腺皮质激素水平未改变,表明醛固酮增多症是由BK(-/-)小鼠肾上腺皮质功能异常所致。

结论

这些结果确定了BK通道在血压调节中以前未知的作用,并增加了BK通道功能障碍可能是特定形式醛固酮增多症基础的可能性。

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