نتایج جستجو برای: bk channel

تعداد نتایج: 228976  

Journal: :American journal of physiology. Heart and circulatory physiology 2014
Michael H Lai Yuejin Wu Zhan Gao Mark E Anderson Julie E Dalziel Andrea L Meredith

Large-conductance Ca(2+)- and voltage-activated K(+) (BK) channels play prominent roles in shaping muscle and neuronal excitability. In the cardiovascular system, BK channels promote vascular relaxation and protect against ischemic injury. Recently, inhibition of BK channels has been shown to lower heart rate in intact rodents and isolated hearts, suggesting a novel role in heart function. Howe...

Journal: :International Journal of Molecular Sciences 2009
Jolanta Skalska Piotr Bednarczyk Marta Piwońska Bogusz Kulawiak Grzegorz Wilczynski Krzysztof Dołowy Alexei P. Kudin Wolfram S. Kunz Adam Szewczyk

The mitochondrial response to changes of cytosolic calcium concentration has a strong impact on neuronal cell metabolism and viability. We observed that Ca(2+) additions to isolated rat brain mitochondria induced in potassium ion containing media a mitochondrial membrane potential depolarization and an accompanying increase of mitochondrial respiration. These Ca(2+) effects can be blocked by ib...

Journal: :Neuroscience letters 1999
A B Smith D J Adams

The effects of Met-enkephalin on Ca2+-dependent K+ channel activity were investigated using the cell-attached patch recording technique on isolated parasympathetic neurones of rat intracardiac ganglia. Large-conductance, Ca2+-dependent K+ channels (BK(Ca)) were examined as an assay of agonist-induced changes in the intracellular free calcium ion concentration ([Ca2+]i). These BK(Ca) channels ha...

1999
Stephen W. Jones

One widely expressed K 1 channel, often called the “BK” channel for its “big” single channel conductance, is regulated by intracellular Ca 2 1 and voltage: at constant voltage, the open probability ( P o ) increases with [Ca 2 1 ]. At constant [Ca 2 1 ], P o increases with depolarization. BK channels participate in many physiological processes, including repolarization of the action potential (...

Journal: :Proceedings of the National Academy of Sciences of the United States of America 2012
Jiusheng Yan Richard W Aldrich

Molecular diversity of ion channel structure and function underlies variability in electrical signaling in nerve, muscle, and nonexcitable cells. Regulation by variable auxiliary subunits is a major mechanism to generate tissue- or cell-specific diversity of ion channel function. Mammalian large-conductance, voltage- and calcium-activated potassium channels (BK, K(Ca)1.1) are ubiquitously expre...

Journal: :The Journal of General Physiology 2006
Weiyan Li Richard W. Aldrich

Crystal structures of potassium channels have strongly corroborated an earlier hypothetical picture based on functional studies, in which the channel gate was located on the cytoplasmic side of the pore. However, accessibility studies on several types of ligand-sensitive K(+) channels have suggested that their activation gates may be located near or within the selectivity filter instead. It rem...

Journal: :American journal of physiology. Cell physiology 2012
Kiril L Hristov Shankar P Parajuli Rupal P Soder Qiuping Cheng Eric S Rovner Georgi V Petkov

Overactive bladder syndrome is frequently associated with increased detrusor smooth muscle (DSM) contractility. We tested the hypothesis that pharmacological activation of the large-conductance voltage- and Ca(2+)-activated K(+) (BK) channel with NS-1619, a selective BK channel opener, reduces the excitability and contractility of human DSM. We used the amphotericin-perforated whole cell patch-...

2012
Frank T. Horrigan

Large conductance calcium- and voltage-dependent BK potassium channels (aka BK(Ca), MaxiK, Slo1, KCa1.1, and KCNMA1) are expressed in a wide variety of tissues throughout the body and are activated by both intracellular Ca(2+) and membrane depolarization. Owing to these properties, BK channels participate in diverse physiological processes from electrical excitability in neurons and secretory c...

Journal: :Hypertension 2005
Hui Xu Xiaochun Bian Stephanie W Watts Alexandra Hlavacova

Large-conductance Ca2+-activated potassium (BK) channels modulate vascular smooth muscle tone. Tempol, a superoxide dismutase (SOD) mimetic, lowers blood pressure and inhibits sympathetic nerve activity in normotensive and hypertensive rats. In the present study, we tested the hypotheses depressor responses caused by tempol are partly mediated by vasodilation. It was found that tempol, but not ...

Journal: :The Journal of physiology 2010
Khaled M Houamed Ian R Sweet Leslie S Satin

BK channels are large unitary conductance K(+) channels cooperatively activated by intracellular calcium and membrane depolarisation. We show that BK channels regulate electrical activity in β-cells of mouse pancreatic islets exposed to elevated glucose. In 11.1 mM glucose, the non-peptidyl BK channel blocker paxilline increased the height of β-cell action potentials (APs) by 21 mV without affe...

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