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Smooth muscle BK channel activity influences blood pressure independent of vascular tone in mice

机译:平滑肌BK通道活性影响小鼠的血压与血管张力无关

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摘要

The large conductance voltage- and Ca2+-activated K+ (BK) channel is an important determinant of vascular tone and contributes to blood pressure regulation. Both activities depend on the ancillary BKβ1 subunit. To determine the significance of smooth muscle BK channel activity for blood pressure regulation, we investigated the potential link between changes in arterial tone and altered blood pressure in BKβ1 knockout (BKβ1−/−) mice from three different genetically defined strains. While vascular tone was consistently increased in all BKβ1−/− mice independent of genetic background, BKβ1−/− strains exhibited increased (strain A), unaltered (strain B) or decreased (strain C) mean arterial blood pressures compared to their corresponding BKβ1+/+ controls. In agreement with previous data on aldosterone regulation by renal/adrenal BK channel function, BKβ1−/− strain A mice have increased plasma aldosterone and increased blood pressure. Consistently, blockade of mineralocorticoid receptors by spironolactone treatment reversibly restored the elevated blood pressure to the BKβ1+/+ strain A level. In contrast, loss of BKβ1 did not affect plasma aldosterone in strain C mice. Smooth muscle-restricted restoration of BKβ1 expression increased blood pressure in BKβ1−/− strain C mice, implying that impaired smooth muscle BK channel activity lowers blood pressure in these animals. We conclude that BK channel activity directly affects vascular tone but influences blood pressure independent of this effect via different pathways.
机译:大电导电压和Ca 2 + 激活的K + (BK)通道是血管紧张程度的重要决定因素,并有助于调节血压。两种活性都依赖于辅助的BKβ1亚基。为了确定平滑肌BK通道活性对血压调节的重要性,我们研究了来自三种不同遗传基因的BKβ1基因敲除(BKβ1-// )小鼠动脉张力变化与血压改变之间的潜在联系确定的菌株。尽管所有BKβ1-/-小鼠的血管张力均持续升高,而与遗传背景无关,但BKβ1-/-品系表现出增加(A株),未改变(B株)或与相应的BKβ1 + / + 对照相比,平均动脉血压降低了(C株)。与先前有关通过肾/肾上腺BK通道功能调节醛固酮的数据一致,BKβ1-/-品系A小鼠血浆醛固酮水平升高,血压升高。一直以来,螺内酯治疗对盐皮质激素受体的阻断可逆地将血压升高恢复到BKβ1 + / + 菌株A水平。相反,BKβ1的损失不影响品系C小鼠的血浆醛固酮。平滑肌限制的BKβ1表达恢复增加了BKβ1-/-品系C小鼠的血压,这表明受损的平滑肌BK通道活性降低了这些动物的血压。我们得出的结论是,BK通道活性直接影响血管张力,但通过不同途径独立于这种作用而影响血压。

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