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短杆菌肽A形成的离子通道的光动力和辐射分解失活:氧化与断裂

Photodynamic and radiolytic inactivation of ion channels formed by gramicidin A: oxidation and fragmentation.

作者信息

Kunz L, Zeidler U, Haegele K, Przybylski M, Stark G

机构信息

Department of Biology, University of Konstanz, Germany.

出版信息

Biochemistry. 1995 Sep 19;34(37):11895-903. doi: 10.1021/bi00037a030.

Abstract

Ion channels formed by the peptide gramicidin A in planar lipid membranes have been reported to react very sensitively upon irradiation of the membrane by ionizing radiation (radiolysis), by UV light (photolysis), or by visible light in the presence of appropriate photosensitizers (photodynamic inactivation). In all three cases the effect is due to the presence of the four tryptophan residues of the pentadecapeptide. Modifications of these amino acids--due to an interaction with free radicals formed upon water radiolysis or due to light absorption--have been found to reduce the membrane conductance by many orders of magnitude. The present study was intended to correlate functional changes, observed at the level of single ion channels, with changes of the molecular structure identified by mass spectrometry. About 98% of the inactivated channels showed a single-channel conductance of virtually zero, while about 2% of the channels present before irradiation are converted to a state of reduced conductance (and reduced lifetime). On the structural level, irradiation in the presence of the photosensitizer Rose Bengal was found to produce oxidation and fragmentation of the peptide at the positions of the tryptophan residues. Our results provide evidence that the main effect of radiolysis, or of photodynamic treatment, is the cleavage of the peptide backbone leading to immediate closure of an open ion channel.

摘要

据报道,在平面脂质膜中由短杆菌肽A形成的离子通道,在受到电离辐射(辐射分解)、紫外线(光解)照射,或在存在适当光敏剂的情况下受到可见光照射(光动力灭活)时,会产生非常敏感的反应。在所有这三种情况下,这种效应都是由于十五肽中四个色氨酸残基的存在。已发现这些氨基酸的修饰——由于与水辐射分解时形成的自由基相互作用或由于光吸收——会使膜电导降低多个数量级。本研究旨在将在单离子通道水平观察到的功能变化与通过质谱鉴定的分子结构变化联系起来。约98%的失活通道显示单通道电导几乎为零,而照射前存在的约2%的通道则转变为电导降低(寿命缩短)的状态。在结构层面上,发现在存在光敏剂孟加拉玫瑰红的情况下进行照射会使肽在色氨酸残基位置发生氧化和断裂。我们的结果提供了证据,表明辐射分解或光动力处理的主要作用是肽主链的断裂,导致开放离子通道立即关闭。

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