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通过新型非甾体药物选择性靶向 BK 通道β1 亚基中的胆烷类固醇识别位点来扩张脑血管。

Cerebrovascular dilation via selective targeting of the cholane steroid-recognition site in the BK channel β1-subunit by a novel nonsteroidal agent.

机构信息

Departments of Pharmacology, University of Tennessee Health Science Center, Memphis, TN 38163, USA.

出版信息

Mol Pharmacol. 2013 May;83(5):1030-44. doi: 10.1124/mol.112.083519. Epub 2013 Mar 1.

Abstract

The Ca(2+)/voltage-gated K(+) large conductance (BK) channel β1 subunit is particularly abundant in vascular smooth muscle. By determining their phenotype, BK β1 allows the BK channels to reduce myogenic tone, facilitating vasodilation. The endogenous steroid lithocholic acid (LCA) dilates cerebral arteries via BK channel activation, which requires recognition by a BK β1 site that includes Thr169. Whether exogenous nonsteroidal agents can access this site to selectively activate β1-containing BK channels and evoke vasodilation remain unknown. We performed a chemical structure database similarity search using LCA as a template, along with a two-step reaction to generate sodium 3-hydroxyolean-12-en-30-oate (HENA). HENA activated the BK (cbv1 + β1) channels cloned from rat cerebral artery myocytes with a potency (EC₅₀ = 53 μM) similar to and an efficacy (×2.5 potentiation) significantly greater than that of LCA. This HENA action was replicated on native channels in rat cerebral artery myocytes. HENA failed to activate the channels made of cbv1 + β2, β3, β4, or β1T169A, indicating that this drug selectively targets β1-containing BK channels via the BK β1 steroid-sensing site. HENA (3-45 μM) dilated the rat and C57BL/6 mouse pressurized cerebral arteries. Consistent with the electrophysiologic results, this effect was larger than that of LCA. HENA failed to dilate the arteries from the KCNMB1 knockout mouse, underscoring BK β1's role in HENA action. Finally, carotid artery-infusion of HENA (45 μM) dilated the pial cerebral arterioles via selective BK-channel targeting. In conclusion, we have identified for the first time a nonsteroidal agent that selectively activates β1-containing BK channels by targeting the steroid-sensing site in BK β1, rendering vasodilation.

摘要

钙/电压门控钾(K+)大电导(BK)通道β1 亚基在血管平滑肌中含量特别丰富。通过确定其表型,BKβ1 允许 BK 通道降低肌源性张力,促进血管舒张。内源性甾体胆酸(LCA)通过 BK 通道激活扩张脑动脉,这需要 BKβ1 位点的识别,该位点包括 Thr169。外源性非甾体药物是否可以进入该位点选择性激活含有β1 的 BK 通道并引起血管舒张尚不清楚。我们使用 LCA 作为模板进行了化学结构数据库相似性搜索,并进行了两步反应生成了钠 3-羟基齐墩果-12-烯-30-酸(HENA)。HENA 激活了从大鼠脑动脉平滑肌细胞克隆的 BK(cbv1+β1)通道,其效力(EC50=53μM)与 LCA 相似,功效(增强 2.5 倍)明显大于 LCA。这种 HENA 作用在大鼠脑动脉平滑肌细胞中的天然通道上得到了复制。HENA 未能激活由 cbv1+β2、β3、β4 或β1T169A 组成的通道,表明该药物通过 BKβ1 甾体感应位点选择性靶向含有β1 的 BK 通道。HENA(3-45μM)扩张了大鼠和 C57BL/6 小鼠加压脑动脉。与电生理结果一致,这种作用大于 LCA。HENA 未能扩张 KCNMB1 基因敲除小鼠的动脉,突出了 BKβ1 在 HENA 作用中的作用。最后,颈动脉内注射 HENA(45μM)通过选择性靶向 BK 通道扩张脑小动脉。总之,我们首次发现了一种非甾体药物,它通过靶向 BKβ1 中的甾体感应位点选择性激活含有β1 的 BK 通道,从而引起血管舒张。

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