Cook D L, Hales C N
Nature. 1984;311(5983):271-3. doi: 10.1038/311271a0.
It is known that glucose-induced depolarization of pancreatic B-cells is due to reduced membrane K+-permeability and is coupled to an increase in the rate of glycolysis, but there has been no direct evidence linking specific metabolic processes or products to the closing of membrane K+ channels. During patch-clamp studies of proton inhibition of Ca2+-activated K+ channels [GK(Ca)] in B-cells, we identified a second K+-selective channel which is rapidly and reversibly inhibited by ATP applied to the cytoplasmic surface of the membrane. This channel is spontaneously active in excised patches and frequently coexists with GK(Ca) channels yet is insensitive to membrane potential and to intracellular free Ca2+ and pH. Blocking of the channel is ATP-specific and appears not to require metabolism of the ATP. This ATP-sensitive K+ channel [GK(ATP)] may be a link between metabolism and membrane K+-permeability in pancreatic B-cells.
已知葡萄糖引起的胰腺β细胞去极化是由于膜钾通透性降低,并与糖酵解速率增加相关,但尚无直接证据表明特定的代谢过程或产物与膜钾通道的关闭有关。在对β细胞中质子抑制钙激活钾通道[GK(Ca)]的膜片钳研究中,我们发现了另一种钾选择性通道,该通道被施加于膜胞质面的ATP快速且可逆地抑制。此通道在切除的膜片中自发激活,且常与GK(Ca)通道共存,但对膜电位、细胞内游离钙和pH不敏感。该通道的阻断具有ATP特异性,且似乎不需要ATP的代谢。这种ATP敏感性钾通道[GK(ATP)]可能是胰腺β细胞代谢与膜钾通透性之间的一个联系环节。