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Intrinsic gating of inward rectifier in bovine pulmonary artery endothelial cells in the presence or absence of internal Mg2+

机译:在存在或不存在内部Mg2 +的情况下牛肺动脉内皮细胞内向整流器的固有门控

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摘要

Inward rectifier (IR) currents were studied in bovine pulmonary artery endothelial cells in the whole-cell configuration of the patch-clamp technique with extracellular K+ concentrations, [K+]o, ranging from 4.5 to 160 mM. Whether the concentration of free Mg2+ in the intracellular solution, [Mg2+]i, was 1.9 mM or nominally 0, the IR exhibited voltage- and time-dependent gating. The IR conductance was activated by hyperpolarization and deactivated by depolarization. Small steady-state outward IR currents were present up to approximately 40 mV more positive than the K+ reversal potential, EK, regardless of [Mg2+]i. Modeled as a first-order C in equilibrium O gating process, both the opening rate, alpha, and the closing rate, beta, were exponentially dependent on voltage, with beta more steeply voltage dependent, changing e-fold for 9 mV compared with 18 mV for an e-fold change in alpha. Over all [K+]o studied, the voltage dependence of alpha and beta shifted along with EK, as is characteristic of IR channels in other cells. The steady-state voltage dependence of the gating process was well described by a Boltzmann function. The half-activation potential was on average approximately 7 mV negative to the observed reversal potential in all [K+]o regardless of [Mg2+]i. The activation curve was somewhat steeper when Mg-free pipette solutions were used (slope factor, 4.3 mV) than when pipettes contained 1.9 mM Mg2+ (5.2 mV). The simplest interpretation of these data is that IR channels in bovine pulmonary artery endothelial cells have an intrinsic gating mechanism that is not due to Mg block.
机译:以膜片钳技术的全细胞配置在牛肺动脉内皮细胞中研究了内向整流器(IR)电流,其细胞外K +浓度[K +] o为4.5至160 mM。无论细胞内溶液中的游离Mg2 +浓度[Mg2 +] i为1.9 mM或名义上为0,IR都显示出电压和时间依赖性门控。 IR电导通过超极化激活,而通过去极化去激活。不管[Mg2 +] i如何,都存在比K +反转电位EK高40mV的正稳态小向外IR电流。作为平衡门控过程中的一阶C建模,打开率α和闭合率β均与电压成指数关系,其中β与电压的关系更为陡峭,电子倍数变化为9 mV,而电子倍数为18 mV表示alpha倍数的倍数变化。在所有研究的[K +] o中,α和β的电压依赖性随EK发生偏移,这是其他单元中IR通道的特征。玻尔兹曼函数很好地描述了门控过程的稳态电压依赖性。与[Mg2 +] i无关,在所有[K +] o中半激活电位平均约为所观察到的逆转电位的负值7 mV。使用不含镁的移液器(斜率,4.3 mV)时,其活化曲线比移液器中含1.9 mM Mg2 +(5.2 mV)时的活化曲线陡峭。这些数据的最简单解释是,牛肺动脉内皮细胞中的IR通道具有一种内在的门控机制,这并不是由于Mg阻滞所致。

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