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首页> 外文期刊>American Journal of Physiology >Partially active channels produced by PKA site mutation of the cloned renal K+ channel, ROMK2 (kir1.2).
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Partially active channels produced by PKA site mutation of the cloned renal K+ channel, ROMK2 (kir1.2).

机译:克隆的肾K +通道ROMK2(kir1.2)的PKA位点突变产生的部分活性通道。

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The activity of the cloned renal K+ channel (ROMK2) is dependent on a balance between phosphorylation and dephosphorylation. There are only three protein kinase A (PKA) sites on ROMK2, with the phosphorylated residues being serine-25 (S25), serine-200 (S200), and serine-294 (S294) (Z.-C. Xu, Y. Yang, and S. C. Hebert. J. Biol. Chem. 271: 9313-9319, 1996). We previously mutated these sites from serine to alanine to study the contribution of each site to overall channel function. Here we have studied each of these single PKA site mutants using the single-channel configuration of the patch-clamp technique. Both COOH-terminal mutations at sites S200A and S294A showed a decreased open channel probability (Po), whereas the NH2-terminal mutation at site S25A showed no change in Po compared with wild-type ROMK2. The decrease in Po for the S200A and S294A mutants was caused by the additional presence of a long closed state. In contrast, the occurrence of the S25A channel was approximately 66% less, suggesting fewer active channels at the membrane. The S200A and S294A channels had different kinetics compared with wild-type ROMK2 channels, showing an increased occurrence of sublevels. Similar kinetics were observed when wild-type ROMK2 was excised and exposed to dephosphorylating conditions, indicating that these effects are specifically a property of the partially phosphorylated channel and not due to an unrelated effect of the mutation.
机译:克隆的肾脏K +通道(ROMK2)的活性取决于磷酸化和去磷酸化之间的平衡。 ROMK2上只有三个蛋白激酶A(PKA)位点,磷酸化的残基为丝氨酸25(S25),丝氨酸200(S200)和丝氨酸294(S294)(Z.-C. Xu,Y. Yang和SC Hebert.J.Biol.Chem.271:9313-9319,1996)。我们先前将这些位点从丝氨酸突变为丙氨酸,以研究每个位点对整体通道功能的贡献。在这里,我们使用膜片钳技术的单通道配置研究了这些单个PKA位点突变体。与野生型ROMK2相比,位点S200A和S294A处的COOH末端突变均显示出降低的开放通道概率(Po),而位点S25A处的NH2末端突变均未显示Po发生变化。 S200A和S294A突变体的Po降低是由于另外存在长封闭状态引起的。相反,S25A通道的出现减少了约66%,表明膜上的活性通道减少了。与野生型ROMK2通道相比,S200A和S294A通道具有不同的动力学特性,显示了亚水平的增加。当切除野生型ROMK2并将其暴露于去磷酸化条件时,观察到了相似的动力学,表明这些作用是部分磷酸化通道的特有属性,而不是由于突变的无关影响。

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