首页> 美国卫生研究院文献>The Journal of Physiology >Mechanism of action of a K+ channel activator BRL 38227 on ATP-sensitive K+ channels in mouse skeletal muscle fibres.
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Mechanism of action of a K+ channel activator BRL 38227 on ATP-sensitive K+ channels in mouse skeletal muscle fibres.

机译:K +通道激活剂BRL 38227对小鼠骨骼肌纤维中ATP敏感K +通道的作用机理。

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摘要

1. Investigations were made into the effects of BRL 38227, a potassium channel activator, on ATP-sensitive potassium channels (K+ATP channels) in single fibres dissociated from the flexor digitorum brevis muscle of C57BL/6J mice. 2. In cell-attached patches BRL 38227 (100 microM) caused activation of a glibenclamide-sensitive potassium current. Linear slope conductance of the inward current, partial rectification of the outward current and glibenclamide sensitivity indicate that K+ATP channels are the site of action of BRL 38227. 3. In the absence of ATP at the cytoplasmic side of excised inside-out patches, BRL 38227 caused direct and magnesium-dependent activation of K+ATP channels. The degree of activation diminished with successive applications of BRL 38227. 4. BRL 38227 also caused activation of K+ATP channels in the presence of low (< 100 microM) but not high (1.0 mM) ATP, particularly in patches containing large numbers of channels. 5. BRL 38227 and 5 microM MgATP failed to activate channels following complete run-down. 6. Results show that BRL 38227 caused direct activation of K+ATP in skeletal muscle and that this was mediated through a magnesium-dependent binding site rather than alleviation of inhibition by competitive displacement of ATP from the inhibitory site.
机译:1.研究了钾通道激活剂BRL 38227对从C57BL / 6J小鼠的屈指短肌分离的单纤维中ATP敏感钾通道(K + ATP通道)的影响。 2.在细胞贴片中,BRL 38227(100 microM)引起了格列本脲敏感性钾电流的激活。内向电流的线性斜率电导,外向电流的部分矫正和格列本脲敏感性表明,K + ATP通道是BRL 38227的作用位点。3.在从内而外切开的片的胞质侧不存在ATP的情况下, BRL 38227引起了K + ATP通道的直接活化和镁依赖性活化。连续应用BRL 38227会降低激活程度。4.在存在低(<100 microM)但不存在高(1.0 mM)ATP的情况下,BRL 38227也会引起K + ATP通道的激活,尤其是在含有大量ATP的贴剂中渠道。 5. BRL 38227和5 microM MgATP在完全耗尽后未能激活通道。 6.结果表明,BRL 38227引起骨骼肌中K + ATP的直接活化,这是通过镁依赖性结合位点介导的,而不是通过ATP从抑制位点竞争性置换来减轻抑制作用。

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