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A novel type of ATP block on a Ca(2+)-activated K(+) channel from bullfrog erythrocytes.

机译:从牛蛙红细胞的Ca(2+)激活K(+)通道上的新型ATP阻止。

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摘要

Using the patch-clamp technique, we have identified an intermediate conductance Ca(2+)-activated K(+) channel from bullfrog (Rana catesbeiana) erythrocytes and have investigated the regulation of channel activity by cytosolic ATP. The channel was highly selective for K(+) over Na(+), gave a linear I-V relationship with symmetrical 117.5 mM K(+) solutions and had a single-channel conductance of 60 pS. Channel activity was dependent on Ca(2+) concentration (K(1/2) = 600 nM) but voltage-independent. These basic characteristics are similar to those of human and frog erythrocyte Ca(2+)-activated K(+) (Gardos) channels previously reported. However, cytoplasmic application of ATP reduced channel activity with block exhibiting a novel bell-shaped concentration dependence. The channel was inhibited most by approximately 10 microM ATP (P(0) reduced to 5% of control) but less blocked by lower and higher concentrations of ATP. Moreover, the novel type of ATP block did not require Mg(2+), was independent of PKA or PKC, and was mimicked by a nonhydrolyzable ATP analog, AMP-PNP. This suggests that ATP exerts its effect by direct binding to sites on the channel or associated regulatory proteins, but not by phosphorylation of either of these components.
机译:使用膜片钳技术,我们从牛蛙(Rana catesbeiana)红细胞中鉴定了一个中等电导Ca(2+)激活的K(+)通道,并研究了胞质ATP对通道活性的调节。该通道对Na(+)上的K(+)具有高度选择性,与对称的117.5 mM K(+)解决方案具有线性I-V关系,并且单通道电导为60 pS。通道活性取决于Ca(2+)浓度(K(1/2)= 600 nM),但与电压无关。这些基本特征类似于以前报道的人类和青蛙红细胞Ca(2+)激活的K(+)(Gardos)通道。然而,ATP的细胞质应用降低了通道活性,并表现出新颖的钟形浓度依赖性。该通道被大约10 microM ATP抑制最多(P(0)降至对照的5%),但被较低和较高浓度的ATP所抑制的程度较小。此外,新型的ATP阻滞不需要Mg(2+),独立于PKA或PKC,并由不可水解的ATP类似物AMP-PNP模仿。这表明ATP通过直接结合到通道或相关调节蛋白上的位点发挥作用,而不是通过这些成分中任何一个的磷酸化来发挥作用。

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  • 作者

    Shindo, M; Imai, Y; Sohma, Y;

  • 作者单位
  • 年度 2000
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  • 原文格式 PDF
  • 正文语种 en
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