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首页> 外文期刊>Biochimica et biophysica acta: international journal of biochemistry and biophysics >The ion-channel activity of longibrachins LGA I and LGB II: effects of pro-2/Ala and gln-18/Glu substitutions on the alamethicin voltage-gated membrane channels.
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The ion-channel activity of longibrachins LGA I and LGB II: effects of pro-2/Ala and gln-18/Glu substitutions on the alamethicin voltage-gated membrane channels.

机译:Longibrachins LGA I和LGB II的离子通道活性:pro-2 / Ala和gln-18 / Glu取代对alamethicin电压门控膜通道的影响。

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Longibrachins LGA I (Ac Aib Ala Aib Ala Aib(5) Ala Gln Aib Val Aib(10) Gly Leu Aib Pro Val(15) Aib Aib Gln Gln Pheol(20), with Aib: alpha-aminoisobutyric acid, pheol: phenylalaninol) and LGB II are two homologous 20-residue long-sequence peptaibols isolated from the fungus Trichoderma longibrachiatum that differ between them by a Gln-18/Glu substitution. They distinguish from alamethicin by a Pro-2 for Ala replacement, which allowed to examine for the first time with natural Aib-containing analogues, the effect of Pro-2 on the ion-channel properties exhibited by alamethicin. The influence of these structural modifications on the voltage-gated ion-channel forming activity of the peptides in planar lipid bilayers were analysed. The general 'barrel-stave' model of ion-channel activity, already described for alamethicin, was preserved with both longibrachins. The negatively charged LGB II promoted higher oligomerisation levels, which could presumably dilute the repulsive effect of the negative Glu ring near the entrance of the channel and resulted in lower lifetimes of the substates, confirming the strong anchor of the peptide C-terminus at the cis-interface. Reduction of the channel lifetimes was observed for the longibrachins, compared to alamethicin. This argues for a better stabilisation of the channels formed by peptaibols having a proline at position 2, which results in better anchoring of the peptide monomer N-terminus at the trans-bilayer interface. Qualitative assays of the temperature dependence on the neutral longibrachin channel properties demonstrated a high increase of channel lifetimes and a markedly reduced voltage-sensitivity when the temperature was decreased, showing that such conditions may allow to study the channel-forming properties of peptides leading to fast current fluctuations.
机译:Longibrachins LGA I(Ac Aib Ala Aib Ala Aib(5)Ala Gln Aib Val Aib(10)Gly Leu Aib Pro Val(15)Aib Aib Gln Gln苯酚(20),以及Aib:α-氨基异丁酸,苯酚:苯丙氨醇) LGB II和LGB II是从木霉木霉菌中分离出的两个同源的20残基长序列肽醇,它们之间的区别在于Gln-18 / Glu取代。他们通过丙氨酸替代品Pro-2与丙二酸有所区别,丙氨酸替代品Pro-2首次允许使用天然的含Aib的类似物检查Pro-2对丙二酸所表现出的离子通道性质的影响。分析了这些结构修饰对平面脂质双层中肽的电压门控离子通道形成活性的影响。两种乐曲草都保留了关于乐果霉素的离子通道活性的一般“桶-壁”模型。带负电荷的LGB II促进了更高的低聚水平,这可能会削弱通道入口附近的负Glu环的排斥作用,并导致亚状态的寿命降低,从而证实了肽C末端在顺式处的牢固锚定-接口。与阿来美辛相比,longibrachins的通道寿命缩短。这证明了由在位置2具有脯氨酸的肽醇形成的通道的更好的稳定性,这导致肽单体N-末端更好地锚定在跨双分子层界面上。对温度依赖于中性longibrachin通道性质的定性分析表明,通道寿命大大增加,温度降低时电压敏感性显着降低,这表明这种条件可以研究导致快速反应的肽的通道形成性质。当前的波动。

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