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首页> 外文期刊>The Journal of Pharmacology and Experimental Therapeutics: Official Publication of the American Society for Pharmacology and Experimental Therapeutics >1-(1-Hexyl-6-(methyloxy)-1H-indazol-3-yl)-2-methyl-1-propanone, a potent and highly selective small molecule blocker of the large-conductance voltage-gated and calcium-dependent K+ channel.
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1-(1-Hexyl-6-(methyloxy)-1H-indazol-3-yl)-2-methyl-1-propanone, a potent and highly selective small molecule blocker of the large-conductance voltage-gated and calcium-dependent K+ channel.

机译:1-(1-己基-6-(甲氧基)-1H-吲唑-3-基)-2-甲基-1-丙酮,一种强效且高选择性的小传导阻滞剂,具有大电流电压门控和钙依赖性K +频道。

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摘要

The large-conductance voltage-gated and calcium-dependent K(+) (BK) channels are widely distributed and play important physiological roles. Commonly used BK channel inhibitors are peptide toxins that are isolated from scorpion venoms. A high-affinity, nonpeptide, synthesized BK channel blocker with selectivity against other ion channels has not been reported. We prepared several compounds from a published patent application (Doherty et al., 2004) and identified 1-[1-hexyl-6-(methyloxy)-1H-indazol-3-yl]-2-methyl-1-propanone (HMIMP) as a potent and selective BK channel blocker. The patch-clamp technique was used for characterizing the activity of HMIMP on recombinant human BK channels (alpha subunit, alpha+beta1 and alpha+beta4 subunits). HMIMP blocked all of these channels with an IC(50) of approximately 2 nM. The inhibitory effect of HMIMP was not voltage-dependent, nor did it require opening of BK channels. HMIMP also potently blocked BK channels in freshly isolated detrusor smooth muscle cells and vagal neurons. HMIMP (10 nM) reduced the open probability significantly without affecting single BK-channel current in inside-out patches. HMIMP did not change the time constant of open states but increased the time constants of the closed states. More importantly, HMIMP was highly selective for the BK channel. HMIMP had no effect on human Na(V)1.5 (1 microM), Ca(V)3.2, L-type Ca(2+), human ether-a-go-go-related gene potassium channel, KCNQ1+minK, transient outward K(+) or voltage-dependent K(+) channels (100 nM). HMIMP did not change the action potentials of ventricular myocytes, confirming its lack of effect on cardiac ion channels. In summary, HMIMP is a highly potent and selective BK channel blocker, which can serve as an important tool in the pharmacological study of the BK channel.
机译:大电导电压门控和钙依赖性K(+)(BK)通道分布广泛,并发挥重要的生理作用。常用的BK通道抑制剂是从蝎毒中分离出来的肽毒素。尚未报道对其他离子通道具有选择性的高亲和力,非肽,合成的BK通道阻滞剂。我们从公开的专利申请(Doherty等人,2004)中制备了几种化合物,并鉴定出1- [1-己基-6-(甲氧基)-1H-吲唑-3-基] -2-甲基-1-丙酮(HMIMP )作为有效且有选择性的BK频道阻止程序。膜片钳技术用于表征HMIMP在重组人BK通道(α亚基,α+β1和α+β4亚基)上的活性。 HMIMP用大约2 nM的IC(50)阻止了所有这些通道。 HMIMP的抑制作用不是电压依赖性的,也不需要打开BK通道。 HMIMP还可以有效地阻断新鲜分离的逼尿肌平滑肌细胞和迷走神经元中的BK通道。 HMIMP(10 nM)显着降低了打开概率,而不会影响由内而外的贴片中的单个BK通道电流。 HMIMP不会更改打开状态的时间常数,但会增加关闭状态的时间常数。更重要的是,HMIMP对BK频道具有高度的选择性。 HMIMP对人类Na(V)1.5(1 microM),Ca(V)3.2,L型Ca(2+),人类以太相关基因钾通道,KCNQ1 + minK,瞬时无影响向外的K(+)通道或电压相关的K(+)通道(100 nM)。 HMIMP并没有改变心室肌细胞的动作电位,证实了其对心脏离子通道的影响不足。总之,HMIMP是一种高效且选择性的BK通道阻滞剂,可以作为BK通道药理研究的重要工具。

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