首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >PHOTOREGULATION OF BIOLOGICAL ACTIVITY BY PHOTOCHROMIC REAGENTS III. PHOTOREGULATION OF BIOELECTRICITY BY ACETYLCHOLINE RECEPTOR INHIBITORS
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PHOTOREGULATION OF BIOLOGICAL ACTIVITY BY PHOTOCHROMIC REAGENTS III. PHOTOREGULATION OF BIOELECTRICITY BY ACETYLCHOLINE RECEPTOR INHIBITORS

机译:光致发色剂对生物活性的光调节III。乙酰胆碱受体抑制剂对生物电的光调节

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摘要

The photochromic compounds N-p-phenylazophenyl-N-phenylcarbamylcholine chloride and p-phenylazophenyltrimethylammonium chloride inhibit the carbamylcholine-produced depolarization of the excitable membrane of the monocellular electroplax preparation of Electrophorus. The trans isomer of each predominates in the light of a photoflood (420 mμ) lamp; they are stronger inhibitors than the cis isomers, which predominate under ultraviolet (320 mμ) irradiation. The potential difference across the excitable membrane may be photoregulated by exposing an electroplax in the presence of a solution of carbamylcholine and either of the two compounds to light of appropriate wavelengths, since light shifts the cis-trans equilibrium. The system may be considered as a model illustrating how one may link a cis-trans isomerization, the first step in the initiation of a visual impulse, with substantial changes (20-30 mv) in the potential difference across an excitable membrane.
机译:光致变色化合物N-对-苯基偶氮苯基-N-苯基氨基甲酰胆碱氯化物和对-苯基偶氮苯基三甲基氯化铵抑制氨基甲酰胆碱引起的电泳单细胞电胶质制剂的可兴奋膜的去极化作用。根据泛光灯(420mμ),每种反式异构体占主导地位;与顺式异构体相比,它们是更强的抑制剂,顺式异构体在紫外线(320mμ)辐射下居多。可以通过在氨基甲酰胆碱溶液和两种化合物中的任何一种的存在下将电斑暴露于适当波长的光中来调节可兴奋膜上的电势差,因为光会改变顺反平衡。该系统可以被认为是一个模型,该模型说明了人们如何将顺式-反式异构化联系起来,这是引发视觉冲动的第一步,整个可激发膜上的电势差发生了较大变化(20-30 mv)。

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