首页> 美国卫生研究院文献>The Journal of Physiology >p-chloro-mercuriphenyl sulphonate activates a quinine-sensitive potassium conductance in frog lens.
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p-chloro-mercuriphenyl sulphonate activates a quinine-sensitive potassium conductance in frog lens.

机译:对氯-水银苯基磺酸盐可激活青蛙晶状体中奎宁敏感的钾电导。

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摘要

1. The effects of the sulphydryl-complexing reagent p-chloro-mercuriphenyl sulphonate (pCMPS) on membrane voltage and electrical conductance were studied on the isolated frog lens. 2. At low concentrations (0.1-50 microM) pCMPS induced a rapid and graded hyperpolarization of the lens membrane potential which saturated at -97 mV. 3. The lens conductance also showed a graded increase, but the initial changes were apparent only at concentrations above 1 microM. 4. Decreasing the external potassium concentration from 2.5 to 0.5 mM had little effect on the membrane potential in the absence of pCMPS, but increased the voltage from -97 to -110 mV when pCMPS was present. 5. Quinine (300 microM) had no effect when added in control solution, but depolarized the membrane potential and decreased the conductance when added to a pCMPS-treated preparation. 6. These data suggest that pCMPS activates voltage-sensitive potassium channels that are quiescent at the frog resting potential in control solution. 7. At pCMPS concentrations greater than or equal to 100 microM, the initial hyperpolarization is followed by a marked but slow depolarization of the membrane potential and a further increase in lens conductance. These data suggest that non-specific cation channels are activated in this case. 8. Cysteine (5 mM) added to a pCMPS-treated lens leads to a rapid recovery of membrane potential and conductance to near their resting values whether the lens had previously been exposed to low or high concentrations of pCMPS. 9. All of these changes in lens voltage and conductance occurred without apparent alteration in the lens internal sulphydryl content.
机译:1.在分离的蛙镜上研究了巯基配合剂对氯-巯基苯基磺酸盐(pCMPS)对膜电压和电导率的影响。 2.在低浓度(0.1-50 microM)下,pCMPS引起晶状体膜电位快速且分级的超极化,饱和度为-97 mV。 3.晶状体电导也显示出逐渐增加的趋势,但是初始变化仅在浓度高于1 microM时才明显。 4.在不存在pCMPS的情况下,将外部钾浓度从2.5 mM降低到0.5 mM对膜电位几乎没有影响,但是当存在pCMPS时,将电压从-97增加到-110 mV。 5.当加入对照溶液时,奎宁(300 microM)没有作用,但是当加入pCMPS处理的制剂中时,可使膜电位去极化并降低电导率。 6.这些数据表明,pCMPS激活了电压敏感的钾离子通道,该通道在对照溶液中的青蛙静止电位下处于静止状态。 7.在pCMPS浓度大于或等于100 microM时,最初的超极化作用是膜电位显着但缓慢的去极化作用,并且晶状体电导进一步增加。这些数据表明在这种情况下激活了非特异性阳离子通道。 8.将半胱氨酸(5 mM)添加到经过pCMPS处理的晶状体中,可以使膜电位迅速恢复,并且将电导率恢复到接近其静止值,无论该晶状体先前是否曾暴露于低浓度或高浓度的pCMPS中。 9.晶状体电压和电导率的所有这些变化都发生了,而晶状体内部硫基含量没有明显变化。

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