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Ion Channels of Alamethicin Dimer N-Terminally Linked by Disulfide Bond

机译:N-末端通过二硫键连接的Alamethicin Dimer的离子通道

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摘要

A covalent dimer of alamethicin Rf30 was synthesized by linking the N-termini by a disulfide bond. When the dimer peptides were added to the cis-side of a diphytanoyl PC membrane, macroscopic channel current was induced only at cis positive voltages. The single-channel recordings showed several conductance levels that were alternately stabilized. These results indicate that the dimer peptides form stable channels by N-terminal insertion like alamethicin and that most of the pores are assembled from even numbers of helices. Taking advantages of the long open duration of the dimer peptide channels, the current-voltage (I-V) relations of the single-channels were obtained by applying fast voltage ramps during the open states. The I-V relations showed rectification, such that current from the cis-side toward the trans-side is larger than that in the opposite direction. The intrinsic rectification is mainly attributed to the macro dipoles of parallel peptide helices surrounding a central pore.
机译:通过用二硫键连接N末端,合成了乐果霉素Rf30的共价二聚体。当将二聚体肽添加到二植烷酰基PC膜的顺式侧时,仅在顺式正电压下诱导宏观的通道电流。单通道记录显示了几种电导水平,这些电导水平交替稳定。这些结果表明,二聚体肽通过N-末端插入形成了稳定的通道,如来美乐霉素,并且大多数孔是由偶数个螺旋组装而成的。利用二聚体肽通道的长打开持续时间的优势,通过在打开状态期间施加快速的电压斜坡来获得单通道的电流-电压(I-V)关系。 I-V关系显示出整流,使得从顺侧到反侧的电流大于相反方向上的电流。固有的整流主要归因于围绕中心孔的平行肽螺旋的大偶极子。

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