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Kv2通道对抗大鼠脑动脉的肌源性收缩。

Kv2 channels oppose myogenic constriction of rat cerebral arteries.

作者信息

Amberg Gregory C, Santana Luis F

机构信息

Dept. of Physics and Biophysics, Univ. of Washington, PO Box 357290, Seattle, WA 98195, USA.

出版信息

Am J Physiol Cell Physiol. 2006 Aug;291(2):C348-56. doi: 10.1152/ajpcell.00086.2006. Epub 2006 Mar 29.


DOI:10.1152/ajpcell.00086.2006
PMID:16571867
Abstract

By hyperpolarizing arterial smooth muscle, voltage-gated, Ca2+-independent K+ (Kv) channels decrease calcium influx and thus oppose constriction. However, the molecular nature of the Kv channels function in arterial smooth muscle remains controversial. Recent investigations have emphasized a predominant role of Kv1 channels in regulating arterial tone. In this study, we tested the hypothesis Kv2 channels may also significantly regulate tone of rat cerebral arteries. We found that Kv2.1 transcript and protein are present in cerebral arterial smooth muscle. In addition, our analysis indicates that a substantial component (approximately 50%) of the voltage dependencies and kinetics of Kv currents in voltage-clamped cerebral arterial myocytes is consistent with Kv2 channels. Accordingly, we found that stromatoxin, a specific inhibitor of Kv2 channels, significantly decreased Kv currents in these cells. Furthermore, stromatoxin enhanced myogenic constriction of pressurized arterial segments. We also found that during angiotensin II-induced hypertension, Kv2 channel function was reduced in isolated myocytes and in intact arteries. This suggests that impaired Kv2 channel activity may contribute to arterial dysfunction during hypertension. On the basis of these novel observations, we propose a new model of Kv channel function in arterial smooth muscle in which Kv2 channels (in combination with Kv1 channels) contribute to membrane hyperpolarization and thus oppose constriction.

摘要

通过使动脉平滑肌超极化,电压门控的、不依赖钙离子的钾离子(Kv)通道可减少钙离子内流,从而对抗血管收缩。然而,Kv通道在动脉平滑肌中发挥功能的分子本质仍存在争议。最近的研究强调了Kv1通道在调节动脉张力方面的主要作用。在本研究中,我们测试了Kv2通道可能也显著调节大鼠脑动脉张力这一假说。我们发现Kv2.1转录本和蛋白存在于脑动脉平滑肌中。此外,我们的分析表明,在电压钳制的脑动脉肌细胞中,Kv电流的电压依赖性和动力学的很大一部分(约50%)与Kv2通道一致。相应地,我们发现Kv2通道的特异性抑制剂蜂毒明肽可显著降低这些细胞中的Kv电流。此外,蜂毒明肽增强了加压动脉段的肌源性收缩。我们还发现,在血管紧张素II诱导的高血压期间,分离的肌细胞和完整动脉中的Kv2通道功能均降低。这表明Kv2通道活性受损可能导致高血压期间的动脉功能障碍。基于这些新的观察结果,我们提出了一种动脉平滑肌中Kv通道功能的新模型,其中Kv2通道(与Kv1通道一起)有助于膜超极化,从而对抗血管收缩。

相似文献

[1]
Kv2 channels oppose myogenic constriction of rat cerebral arteries.

Am J Physiol Cell Physiol. 2006-8

[2]
Stromatoxin-sensitive, heteromultimeric Kv2.1/Kv9.3 channels contribute to myogenic control of cerebral arterial diameter.

J Physiol. 2010-9-27

[3]
Preferential expression and function of voltage-gated, O2-sensitive K+ channels in resistance pulmonary arteries explains regional heterogeneity in hypoxic pulmonary vasoconstriction: ionic diversity in smooth muscle cells.

Circ Res. 2004-8-6

[4]
Kv2.1 Channels Prevent Vasomotion and Safeguard Myogenic Reactivity in Rat Small Superior Cerebellar Arteries.

Cells. 2023-8-2

[5]
Molecular identification of the role of voltage-gated K+ channels, Kv1.5 and Kv2.1, in hypoxic pulmonary vasoconstriction and control of resting membrane potential in rat pulmonary artery myocytes.

J Clin Invest. 1998-6-1

[6]
Participation of KCNQ (Kv7) potassium channels in myogenic control of cerebral arterial diameter.

J Physiol. 2010-7-12

[7]
Kv2.1 channels play opposing roles in regulating membrane potential, Ca channel function, and myogenic tone in arterial smooth muscle.

Proc Natl Acad Sci U S A. 2020-2-3

[8]
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Am J Physiol. 1998-4

[9]
Angiotensin II reduces the surface abundance of K 1.5 channels in arterial myocytes to stimulate vasoconstriction.

J Physiol. 2017-3-1

[10]
Expression of voltage-dependent K(+) channel genes in mesenteric artery smooth muscle cells.

Am J Physiol. 1999-11

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Intravenous anesthetics have differential effects on human potassium channels.

Acta Biochim Biophys Sin (Shanghai). 2024-9-13

[2]
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Inflamm Regen. 2024-12-27

[3]
Vascular Function and Ion Channels in Alzheimer's Disease.

Microcirculation. 2024-10

[4]
A computational model predicts sex-specific responses to calcium channel blockers in mammalian mesenteric vascular smooth muscle.

Elife. 2024-2-9

[5]
The formation of K2.1 macro-clusters is required for sex-specific differences in L-type Ca1.2 clustering and function in arterial myocytes.

Commun Biol. 2023-11-14

[6]
Kv2.1 Channels Prevent Vasomotion and Safeguard Myogenic Reactivity in Rat Small Superior Cerebellar Arteries.

Cells. 2023-8-2

[7]
The formation of K2.1 macro-clusters is required for sex-specific differences in L-type Ca1.2 clustering and function in arterial myocytes.

Res Sq. 2023-7-19

[8]
A computational model predicts sex-specific responses to calcium channel blockers in mammalian mesenteric vascular smooth muscle.

bioRxiv. 2024-1-6

[9]
Cycling matters: Sex hormone regulation of vascular potassium channels.

Channels (Austin). 2023-12

[10]
Vascular smooth muscle ion channels in essential hypertension.

Front Physiol. 2022-9-23

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