首页> 美国卫生研究院文献>The Journal of Physiology >Propagating potassium and chloride conductances during activation and fertilization of the egg of the frog Rana pipiens.
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Propagating potassium and chloride conductances during activation and fertilization of the egg of the frog Rana pipiens.

机译:在青蛙卵(Rana pipiens)的激活和受精过程中传播钾和氯离子。

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摘要

Fertilization or artificial activation of the frog egg (Rana pipiens) elicits a positive-going shift in membrane potential which results from an opening of Cl- and K+ channels in the egg membrane. We examined the spatial localization of the currents produced by the opening of these channels, using large patch electrodes (tip diameters 3-10 microns). We also used small patch electrodes (tip diameters about 1 micron) to study the single K+ channel currents. After activation, with the patch electrode at any position on the egg surface, we observed a transient current, with a main peak lasting several seconds. This activation current occurred after a variable delay of 0-3 min following the rise of the activation potential. With 10% Ringer solution in the bath and pipette, the current was usually outward, although it sometimes had an inward component. With one patch electrode on the animal surface of the egg and another patch electrode on the vegetal surface, we observed that the activation current propagated over the egg surface. In experiments where the egg was activated by applying a hyperpolarizing pulse, the response in the animal half preceded that in the vegetal half by an average of about 1 min. The amplitude of the peak outward current was similar for animal and vegetal recordings (1-2 mA/cm2). Tetraethylammonium (11 mM) in the patch pipette blocked most of the outward component of the activation current and revealed an underlying inward component. The inward component of the activation current was carried by Cl-, since it could be reversed by raising the Cl- concentration in the pipette. The Cl- component of the activation current propagated over the egg surface, with timing similar to that of the total current. The average amplitude of the peak Cl- current was six or more times larger at the animal than the vegetal surface. Fertilization caused a current to propagate from the animal to the vegetal surface, like the current observed during activation. With a small patch electrode, single channel currents of the K+ component of the activation current could be seen. The probability that the channels were open increased at more positive potentials. The single channel conductance was estimated to be 25 pS, and the reversal potential to be -150 mV. Single Cl- channel currents have not yet been seen. Activation or fertilization of the frog egg resulted in a wave-like opening of Cl- and K+ channels, which spread from the animal to the vegetal half of the egg.(ABSTRACT TRUNCATED AT 400 WORDS)
机译:青蛙卵(Rana pipiens)的受精或人工激活引起膜电位的正向移动,这是由于卵膜中Cl-和K +通道的打开而引起的。我们使用大型贴片电极(尖端直径3-10微米)检查了通过打开这些通道而产生的电流的空间定位。我们还使用小型贴片电极(尖端直径约1微米)来研究单个K +通道电流。激活后,在蛋表面上任何位置的贴片电极上,我们观察到一个瞬态电流,主峰持续几秒钟。该激活电流在激活电位上升之后的0-3分钟的可变延迟后发生。在浴和移液器中使用10%林格溶液时,电流通常是向外的,尽管有时会向内。在鸡蛋的动物表面上有一个贴片电极,在植物表面上有另一个贴片电极,我们观察到激活电流在鸡蛋表面上传播。在通过施加超极化脉冲激活鸡蛋的实验中,动物一半的响应比植物一半的响应平均提前约1分钟。动物和植物记录的外向电流峰值幅度相似(1-2 mA / cm2)。贴片移液器中的四乙铵(11 mM)阻止了激活电流的大部分外向成分,并揭示了潜在的内向成分。激活电流的内向分量由Cl-承载,因为它可以通过提高移液管中的Cl-浓度来逆转。激活电流的Cl成分在卵表面上传播,时机类似于总电流。在动物处,Cl-电流峰值的平均幅度是植物表面的六倍或更多倍。受精导致电流从动物传播到植物表面,就像激活过程中观察到的电流一样。使用小的贴片电极,可以看到激活电流的K +分量的单通道电流。通道打开的可能性在更多的正电位下增加。单通道电导估计为25 pS,反向电势为-150 mV。尚未见到单个Cl通道电流。青蛙卵的激活或受精导致Cl-和K +通道呈波浪状开放,从动物传播到卵的植物一半(摘要截断了400个单词)

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