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首页> 外文期刊>Toxicon: An International Journal Devoted to the Exchange of Knowledge on the Poisons Derived from Animals, Plants and Microorganisms >PALYTOXIN-INDUCED SINGLE-CHANNEL CURRENTS FROM THE SODIUM PUMP SYNTHESIZED BY IN VITRO EXPRESSION
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PALYTOXIN-INDUCED SINGLE-CHANNEL CURRENTS FROM THE SODIUM PUMP SYNTHESIZED BY IN VITRO EXPRESSION

机译:体外表达帕洛毒素诱导的钠泵单通道电流

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摘要

Palytoxin, the most potent animal toxin, is proposed to convert Na+/K+-ATPase into a cation-selective ion channel. Because of the ubiquity of pumps and channels in the living tissues used to study its mechanism of action, it is difficult to rule out that another site may be involved. In order to show that palytoxin selectively acts on Na+/K+-ATPase, two entirely in vitro methods were employed: (1) a cell-free expression system to synthesize the rat alpha 3 and beta 1 subunit proteins, and (2) single-channel recording of the synthetic Na+/K+-ATPase reconstituted in a planar lipid bilayer. Upon addition of palytoxin, single-channel currents were induced which had a conductance of 10 pS, in agreement with previous studies. In control experiments, when the cDNAs for Na+/K+-ATPase subunits were omitted, no single-channel currents were induced with palytoxin. Thus, the results show unambiguously that the Na+/K+-ATPase is the site of action for palytoxin. Because palytoxin turns the Na+/K+-ATPase into a channel which can be detected by the exquisitely sensitive single-channel recording technique, the present results are the first to demonstrate the activity of in vitro synthesized Na+/K+-ATPase. (C) 1997 Elsevier Science Ltd. [References: 28]
机译:拟议中的最有效的动物毒素是Palytoxin,它可以将Na + / K + -ATPase转换为阳离子选择性离子通道。由于用于研究其作用机理的活组织中泵和通道的普遍性,很难排除可能涉及另一个部位。为了显示植物毒素选择性地作用于Na + / K + -ATPase,采用了两种完全体外的方法:(1)无细胞表达系统合成大鼠α3和β1亚基蛋白,以及(2)单在平面脂质双层中重构的合成Na + / K + -ATPase的通道记录。与以前的研究一致,在添加palytoxin后,会感应出电导率为10 pS的单通道电流。在对照实验中,当省略了Na + / K + -ATPase亚基的cDNA时,用palytoxin不会诱导单通道电流。因此,结果明确表明Na + / K + -ATPase是palytoxin的作用位点。由于植物毒素将Na + / K + -ATPase转变为可以通过非常灵敏的单通道记录技术检测到的通道,因此本结果首次证明了体外合成的Na + / K + -ATPase的活性。 (C)1997 Elsevier Science Ltd. [参考:28]

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