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Published on: June 7, 2013
Elevated blood pressure linked to primary hyperaldosteronism and impaired vasodilation in BK channel-deficient mice
Matthias Sausbier1, Claudia Arntz, Iancu Bucurenciu
1Pharmakologie und Toxikologie, Pharmazeutisches Institut der Universität Tübingen, Tübingen, Germany.
Insights
Deletion of the large-conductance, voltage- and Ca2+-dependent K+ (BK) channel alpha subunit causes high blood pressure due to hyperaldosteronism. This dysfunction in BK channels may be linked to certain forms of hyperaldosteronism.
Area of Science:
- Cardiovascular Physiology
- Ion Channel Function
- Renal and Adrenal Regulation
Background:
- Elevated blood pressure is a primary cardiovascular disease risk factor.
- Large-conductance, voltage- and Ca2+-dependent K+ (BK) channels regulate vascular tone.
- BK channels may influence blood pressure via the renin-angiotensin-aldosterone system.
Purpose of the Study:
- Investigate the role of BK channels in blood pressure regulation.
- Determine the impact of BK channel deletion on vascular tone and aldosterone levels.
- Elucidate the mechanism linking BK channels to hyperaldosteronism.
Main Methods:
- Generated BK channel alpha subunit knockout mice (BK-/-).
- Assessed blood pressure, serum electrolytes, and vascular reactivity in BK-/- mice.
- Examined smooth muscle cell membrane potential and ion currents.
- Analyzed adrenal gland BK channel expression and hormonal profiles.
Main Results:
- BK channel deletion caused significant blood pressure elevation and hyperaldosteronism.
- Mutant mice exhibited decreased serum K+, increased vascular tone, and altered smooth muscle cell electrical activity.
- Adrenal glomerulosa cells showed high BK channel expression, suggesting abnormal adrenal function.
Conclusions:
- BK channels play a critical, previously unrecognized role in blood pressure homeostasis.
- BK channel dysfunction is implicated in the development of hyperaldosteronism.
- These findings suggest BK channel defects may underlie specific hyperaldosteronism subtypes.
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.
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