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ATP-sensitive K+ channels in rat pancreatic beta-cells: modulation by ATP and Mg2+ ions.

机译:大鼠胰腺β细胞中的ATP敏感K +通道:由ATP和Mg2 +离子调节。

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摘要

1. The inside-out configuration of the patch-clamp method was used to study the effects of MgATP, free ATP and Mg2+ on single ATP-sensitive K+ channel currents in rat pancreatic beta-cells. 2. Magnesium ions caused a marked reduction of channel activity: 5 mM-free Mg2+ produced a 50% reduction in the activity of inward currents recorded at -60 mV in symmetrical K+ concentrations. 3. Inhibition of channel activity by MgATP does not involve phosphorylation as both free ATP (i.e. ATP in the absence of divalent cations) and non-hydrolysable ATP analogues were effective inhibitors. 4. Magnesium ions produced a striking reduction in the ability of ATP (total) to inhibit channel activity. When channel activity was plotted as a function of the total ATP concentration, the Ki for channel inhibition was 4 microM in Mg2(+)-free solution, compared to a Ki of 26 microM in the presence of 2 mM-Mg2+. The shape of the relationship between channel activity and the total ATP concentration was not changed by Mg2+. When channel activity was plotted as a function of the free ATP concentration, however, Mg2+ had little effect on Ki. This suggests that free ATP is the more potent inhibitor of channel activity and that MgATP has little inhibitory effect. 5. ATP analogues that dissociate only as far as the tribasic form were also able to inhibit channel activity. This suggests that both ATP4- and ATPH3- can block the channel. 6. Like ATP, ADP was more effective at inhibiting channel activity in the absence of Mg2+, that is as the free base. The non-hydrolysable ATP analogues AMP-PNP and AMP-PCP, however, were more effective in the presence of Mg2+. 7. It is suggested that (1) the potency of inhibition is related to the amount of negative charge carried by the ion and (2) the intracellular concentration of free ATP will be an important modulator of channel activity in the intact beta-cell.
机译:1.使用膜片钳方法的由内而外的配置来研究MgATP,游离ATP和Mg2 +对大鼠胰腺β细胞中单个ATP敏感的K +通道电流的影响。 2.镁离子导致通道活性显着降低:在对称K +浓度下,在-60 mV下记录的5 mM不含Mg2 +使流入电流的活性降低了50%。 3. MgATP抑制通道活性不涉及磷酸化,因为游离ATP(即在没有二价阳离子的情况下ATP)和不可水解的ATP类似物都是有效的抑制剂。 4.镁离子使ATP抑制通道活性的能力显着降低。当将通道活性绘制为总ATP浓度的函数时,在无Mg2(+)的溶液中,通道抑制的Ki为4 microM,而在存在2 mM-Mg2 +的情况下,Ki为26 microM。 Mg2 +不会改变通道活性与总ATP浓度之间关系的形状。当将通道活性绘制为游离ATP浓度的函数时,Mg2 +对Ki的影响很小。这表明游离ATP是更有效的通道活性抑制剂,而MgATP几乎没有抑制作用。 5.仅解离至三价形式的ATP类似物也能够抑制通道活性。这表明ATP4-和ATPH3-均可阻断通道。 6.与ATP一样,在缺少Mg2 +的情况下,ADP作为游离碱,在抑制通道活性方面更有效。但是,在存在Mg2 +的情况下,不可水解的ATP类似物AMP-PNP和AMP-PCP更为有效。 7.建议:(1)抑制能力与离子携带的负电荷量有关;(2)细胞内游离ATP的浓度将是完整β细胞中通道活性的重要调节剂。

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