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ATP sensitivity of the ATP-sensitive K+ channel in intact and permeabilized pancreatic beta-cells.

机译:完整和透化的胰腺β细胞中ATP敏感性K +通道的ATP敏感性。

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ATP-sensitive K(+) channels (K(ATP) channels) couple cell metabolism to electrical activity and thereby to physiological processes such as hormone secretion, muscle contraction, and neuronal activity. However, the mechanism by which metabolism regulates K(ATP) channel activity, and the channel sensitivity to inhibition by ATP in its native environment, remain controversial. Here, we used alpha-toxin to permeabilize single pancreatic beta-cells and measure K(ATP) channel ATP sensitivity. We show that the channel ATP sensitivity is approximately sevenfold lower in the permeabilized cell than in the inside-out patch and that this is caused by interaction of Mg-nucleotides with the nucleotide-binding domains of the SUR1 subunit of the channel. The ATP sensitivity observed in permeabilized cells accounts quantitatively for K(ATP) channel activity in intact cells. Thus, our results show that the principal metabolic regulators of K(ATP) channel activity are MgATP and MgADP.
机译:ATP敏感的K(+)通道(K(ATP)通道)将细胞代谢耦合到电活动,从而耦合到生理过程,例如激素分泌,肌肉收缩和神经元活动。但是,新陈代谢调节K(ATP)通道活性的机制以及通道在其天然环境中对ATP抑制的敏感性仍存在争议。在这里,我们使用α-毒素来透化单个胰腺β细胞并测量K(ATP)通道ATP敏感性。我们显示,通道ATP敏感性在透化的细胞中比在里面和外面的补丁大约低七倍,这是由Mg核苷酸与通道的SUR1亚基的核苷酸结合域相互作用引起的。在透化细胞中观察到的ATP敏感性定量解释了完整细胞中的K(ATP)通道活性。因此,我们的结果表明,K(ATP)通道活性的主要代谢调节因子是MgATP和MgADP。

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