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首页> 外文期刊>The Journal of Physiology >Voltage-dependent blockade of HERG channels expressed in Xenopus oocytes by external Ca2+ and Mg2+.
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Voltage-dependent blockade of HERG channels expressed in Xenopus oocytes by external Ca2+ and Mg2+.

机译:爪蟾卵母细胞中外部Ca2 +和Mg2 +所表达的HERG通道的电压依赖性阻断。

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1. We expressed the human eag-related gene (HERG), which is known to encode the delayed rectifier K+ current (IKr) in cardiac muscle, in Xenopus oocytes. Using a two-microelectrode voltage clamp technique, the effect of external Ca2+ and Mg2+ on the HERG current (IHERG) was investigated. 2. When [Ca2+]o was increased, the amplitude of outward IHERG elicited by depolarization decreased, and the rate of current onset slowed. The rate of current decay observed on repolarization was greatly accelerated. The threshold and fully activated potential of IHERG shifted to a more positive potential. On the other hand, the inactivation property represented by the negative slope of the I-V curve and the instantaneous conductance of IHERG were little affected by [Ca2+]o. 3. The effect of [Ca2+]o on IHERG can be interpreted using the channel blockade model. The blockade is voltage dependent; smaller dissociation constants (KM) at more negative potentials indicate that block is facilitated by hyperpolarization. KM changes e-fold for 14.5 mV and the fractional electrical distance of the binding site calculated from this value is 0.86. 4. Blockade by a low concentration of Ca2+ (0.5 mM) was inhibited by increasing [K+]o (from 2 to 20 mM), whereas blockade by a high concentration of Ca2+ (5 mM) was not affected by varying [K+]o, indicating that there is competition between permeating ions and blocking ions. 5. The effect of [Mg2+]o on IHERG was qualitatively similar to that of [Ca2+]o, but the potency was lower. 6. These results suggest that external Ca2+ and Mg2+ block the HERG channel in a voltage- and time-dependent manner, resulting in a voltage dependence which has been regarded as a property of the activation gate.
机译:1.我们在非洲爪蟾卵母细胞中表达了人类eag相关基因(HERG),该基因已知编码心肌中延迟整流子K +电流(IKr)。使用双微电极电压钳技术,研究了外部Ca2 +和Mg2 +对HERG电流(IHERG)的影响。 2.当[Ca2 +] o增加时,由去极化引起的向外IHERG的幅度减小,电流的发生速率减慢。重新极化时观察到的电流衰减速率大大加快。 IHERG的阈值和完全激活的电位转变为更正的电位。另一方面,由I-V曲线的负斜率表示的失活特性和IHERG的瞬时电导几乎不受[Ca2 +] o的影响。 3. [Ca2 +] o对IHERG的影响可以使用通道封锁模型来解释。封锁取决于电压。在更多负电势下较小的解离常数(KM)表示超极化促进了阻滞。 KM在14.5 mV处发生e倍变化,从该值计算出的结合位点的电距离分数为0.86。 4.通过增加[K +] o(从2至20 mM)抑制低浓度Ca2 +(0.5 mM)的阻断,而通过改变[K +] o抑制高浓度Ca2 +(5 mM)的阻断。 ,表明在渗透离子和阻挡离子之间存在竞争。 5. [Mg2 +] o对IHERG的作用在质量上与[Ca2 +] o相似,但效力较低。 6.这些结果表明,外部Ca2 +和Mg2 +会以电压和时间相关的方式阻断HERG通道,从而导致电压相关性,这已被视为激活门的特性。

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