首页> 美国卫生研究院文献>The Journal of General Physiology >Pandinus imperator scorpion venom blocks voltage-gated potassium channels in GH3 cells
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Pandinus imperator scorpion venom blocks voltage-gated potassium channels in GH3 cells

机译:Pandinus imperator蝎毒阻止GH3细胞中的电压门控钾通道

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摘要

We examined the effects of Pandinus imperator scorpion venom on voltage-gated potassium channels in cultured clonal rat anterior pituitary cells (GH3 cells) using the gigohm-seal voltage-clamp method in the whole-cell configuration. We found that Pandinus venom blocks the voltage-gated potassium channels of GH3 cells in a voltage-dependent and dose-dependent manner. Crude venom in concentrations of 50-500 micrograms/ml produced 50-70% block of potassium currents measured at -20 mV, compared with 25-60% block measured at +50 mV. The venom both decreased the peak potassium current and shifted the voltage dependence of potassium current activation to more positive potentials. Pandinus venom affected potassium channel kinetics by slowing channel opening, speeding deactivation slightly, and increasing inactivation rates. Potassium currents in cells exposed to Pandinus venom did not recover control amplitudes or kinetics even after 20-40 min of washing with venom-free solution. The concentration dependence of crude venom block indicates that the toxins it contains are effective in the nanomolar range of concentrations. The effects of Pandinus venom were mimicked by zinc at concentrations less than or equal to 0.2 mM. Block of potassium current by zinc was voltage dependent and resembled Pandinus venom block, except that block by zinc was rapidly reversible. Since zinc is found in crude Pandinus venom, it could be important in the interaction of the venom with the potassium channel. We conclude that Pandinus venom contains toxins that bind tightly to voltage-dependent potassium channels in GH3 cells. Because of its high affinity for voltage-gated potassium channels and its irreversibility, Pandinus venom may be useful in the isolation, mapping, and characterization of voltage-gated potassium channels.
机译:我们在全细胞配置中使用千兆欧-密封电压钳方法检查了Pandinus imperator蝎毒对培养的克隆大鼠前垂体细胞(GH3细胞)中电压门控钾通道的影响。我们发现,Pandinus毒液以电压依赖性和剂量依赖性方式阻断GH3细胞的电压门控钾通道。浓度为50-500微克/毫升的粗毒产生了在-20 mV下测得的50-70%钾电流阻滞,而在+50 mV下测得了25-60%的钾电流阻滞。毒液既降低了峰值钾电流,又将钾电流激活的电压依赖性转变为更正的电位。 Pandinus毒液通过减缓通道开放,略微加快失活速度和增加失活速率来影响钾通道动力学。暴露于Pandinus毒液的细胞中的钾电流甚至在用无毒液洗涤20-40分钟后也无法恢复控制幅度或动力学。粗毒块的浓度依赖性表明,其所含毒素在纳摩尔浓度范围内有效。浓度小于或等于0.2 mM的锌可模仿Pandinus毒液的作用。锌对钾电流的阻滞是电压依赖性的,与Pandinus毒液阻滞相似,除了锌对钾的阻滞是快速可逆的。由于在粗制的Pandinus毒液中发现了锌,因此在毒液与钾通道的相互作用中可能很重要。我们得出结论,Pandinus毒液包含与GH3细胞中电压依赖性钾通道紧密结合的毒素。由于其对电压门控钾通道的高亲和力和不可逆性,Pandinus毒液可用于电压门控钾通道的分离,定位和表征。

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