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Penitrem A 作为一种工具,用于了解大电导 Ca(2+)/电压敏感 K(+) 通道在血管功能中的作用。

Penitrem A as a tool for understanding the role of large conductance Ca(2+)/voltage-sensitive K(+) channels in vascular function.

机构信息

Division of Exercise Physiology, Center for Cardiovascular and Respiratory Sciences, West Virginia University School of Medicine, Morgantown, West Virginia 26506, USA

出版信息

J Pharmacol Exp Ther. 2012 Aug;342(2):453-60. doi: 10.1124/jpet.111.191072. Epub 2012 May 11.

Abstract

Large conductance, Ca(2+)/voltage-sensitive K(+) channels (BK channels) are well characterized, but their physiological roles, often determined through pharmacological manipulation, are less clear. Iberiotoxin is considered the "gold standard" antagonist, but cost and membrane-impermeability limit its usefulness. Economical and membrane-permeable alternatives could facilitate the study of BK channels. Thus, we characterized the effect of penitrem A, a tremorigenic mycotoxin, on BK channels and demonstrate its utility for studying vascular function in vitro and in vivo. Whole-cell currents from human embryonic kidney 293 cells transfected with hSlo α or α + β1 were blocked >95% by penitrem A (IC(50) 6.4 versus 64.4 nM; p < 0.05). Furthermore, penitrem A inhibited BK channels in inside-out and cell-attached patches, whereas iberiotoxin could not. Inhibitory effects of penitrem A on whole-cell K(+) currents were equivalent to iberiotoxin in canine coronary smooth muscle cells. As for specificity, penitrem A had no effect on native delayed rectifier K(+) currents, cloned voltage-dependent Kv1.5 channels, or native ATP-dependent K(ATP) current. Penitrem A enhanced the sensitivity to K(+)-induced contraction in canine coronary arteries by 23 ± 5% (p < 0.05) and increased the blood pressure response to phenylephrine in anesthetized mice by 36 ± 11% (p < 0.05). Our data indicate that penitrem A is a useful tool for studying the role of BK channels in vascular function and is practical for cell and tissue (in vitro) studies as well as anesthetized animal (in vivo) experiments.

摘要

大电导、钙(Ca2+)/电压敏感钾(K+)通道(BK 通道)的特性已得到很好的描述,但它们的生理作用通常通过药理学手段来确定,因此并不明确。依波加毒素被认为是“金标准”拮抗剂,但由于成本和膜通透性问题,其应用受到限制。经济实惠且可通透细胞膜的替代品可能会促进 BK 通道的研究。因此,我们研究了震颤原性霉菌毒素 penitrem A 对 BK 通道的影响,并证明其在体外和体内研究血管功能方面具有应用价值。用 hSlo α 或 α + β1 转染的人胚肾 293 细胞的全细胞电流,被 penitrem A 阻断>95%(IC50 为 6.4 与 64.4 nM;p < 0.05)。此外,penitrem A 可以抑制在膜内面向和细胞附着式膜片中的 BK 通道,而依波加毒素则不能。penitrem A 对全细胞 K+电流的抑制作用与在犬冠状动脉平滑肌细胞中的依波加毒素等效。在特异性方面,penitrem A 对天然延迟整流型 K+电流、克隆电压依赖性 Kv1.5 通道或天然 ATP 依赖性 KATP 电流没有影响。penitrem A 使犬冠状动脉对 K+诱导的收缩的敏感性提高了 23 ± 5%(p < 0.05),并使麻醉小鼠对苯肾上腺素的血压反应提高了 36 ± 11%(p < 0.05)。我们的数据表明,penitrem A 是研究 BK 通道在血管功能中的作用的有用工具,对于细胞和组织(体外)研究以及麻醉动物(体内)实验都是实用的。

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