首页> 美国卫生研究院文献>The Journal of Physiology >Inward rectification of the IRK1 channel expressed in Xenopus oocytes: effects of intracellular pH reveal an intrinsic gating mechanism.
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Inward rectification of the IRK1 channel expressed in Xenopus oocytes: effects of intracellular pH reveal an intrinsic gating mechanism.

机译:在非洲爪蟾卵母细胞中表达的IRK1通道的内向整流:细胞内pH的影响揭示了一种内在的门控机制。

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摘要

1. The effects of intracellular pH (pHi) were investigated in inside-out giant patches from Xenopus oocytes expressing the inward rectifier K+ channel IRK1. 2. After excising patches into Mg2(+)- and polyamine-free solution, a residual time-dependent inactivation of outward current during depolarizing voltage-clamp pulses persisted, reaching an apparent steady-state by 5 min. Raising pHi from 7.2 to 9.0 increased the inactivation rate of the outward current. 3. In the presence of intracellular Mg2+ or polyamines, however, pHi 9.0 either decreased or did not change the inactivation rate of outward current. 4. These results suggest that the inactivation of outward current remaining after > 5 min in Mg2(+)- and polyamine-free solution is not due to slow washout of these substances, but represents a third and probably intrinsic gating mechanism contributing to the inward rectifying property of IRK1. 5. The voltage dependence and kinetics of this gating mechanism were well described by a sequential two open- and one closed-state model in which the rate constants for transitions between the open states were voltage dependent, and those between the open and closed state were pH dependent. 6. In the absence of intracellular Mg2+ and polyamines, reduced pHi blocked inward and outward current through IRK1 channels in a voltage-independent manner without appreciably altering the kinetics. Half-maximal block occurred at pH 6.2-6.4 (Hill coefficient, 1.6). Block of IRK1 by intracellular protons may contribute to membrane depolarization in ischaemic tissue.
机译:1.研究了非洲爪蟾卵母细胞从内向外表达表达内向整流子K +通道IRK1的细胞内pH(pHi)的影响。 2.将贴片切成无Mg2(+)和无多胺溶液后,去极化电压钳制脉冲期间残留的时间依赖性的外向电流失活仍然存在,到5分钟时达到明显的稳态。将pHi从7.2提高到9.0会增加向外电流的失活率。 3.然而,在细胞内Mg2 +或多胺存在下,pHi 9.0降低或没有改变外向电流的失活速率。 4.这些结果表明,> 5分钟后在不含Mg2(+)和多胺的溶液中残留的向外电流失活不是由于这些物质的缓慢冲洗,而是代表了第三种可能是内在的门控机制IRK1的整流属性。 5.通过顺序的两个开态和一个闭态模型很好地描述了该门控机制的电压依赖性和动力学,其中,在开态之间转换的速率常数与电压有关,而在开态和闭态之间的转换速率常数是pH值依赖性。 6.在不存在细胞内Mg2 +和多胺的情况下,降低的pHi以独立于电压的方式阻止了通过IRK1通道的内向和外向电流,而没有明显改变动力学。半最大阻滞发生在pH 6.2-6.4(希尔系数1.6)下。细胞内质子对IRK1的阻断可能有助于缺血组织中的膜去极化。

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