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短杆菌肽A的带负电荷类似物形成离子通道。

Formation of ion channels by a negatively charged analog of gramicidin A.

作者信息

Apell H J, Bamberg E, Alpes H, Läuger P

出版信息

J Membr Biol. 1977 Feb 24;31(1-2):171-88. doi: 10.1007/BF01869403.

Abstract

O-pyromellitylgramicidin is a derivative of gramicidin in which three carboxyl groups are introduced at the terminal hydroxyl end of the peptide. Experiments with artificial lipid membranes indicate that this negatively charged analog forms ion-permeable channels in a way similar to that of gramicidin. If O-pyromellitylgramicidin is added to only one aqueous solution, the membrane conductance remains small, but increases by several orders of magnitude if the same amount is also added to the other side. In accordance with the dimer model of the channel, the membrane conductance under symmetrical conditions is proportional to the square of the aqueous concentration of O-pyromellitylgramicidin over a wide range. The ratio lambdaPG/lambdaG of the single-channel conductance of O-pyromellitylgramicidin to that of gramicidin is close to unity at high ionic strength, but increases more than fivefold at smaller ionic strength (0.01 M). This observation is explained in terms of an electrostatic effect of the fixed negative charges localized near the mouth of the channel. In a mixture of O-pyromellitylgramicidin and gramicidin, unit conductance steps of intermediate size are observed in addition to the conductance steps corresponding to the pure compounds, indicating the formation of hybrid channels. Hybrid channels with preferred orientation may be formed if small amounts of gramicicin and O-pyromellitylgramicidin are added to opposite sides of the membrane. These hybrid channels show a distinct asymmetry in the current-voltage characteristic.

摘要

邻苯四甲酸根短杆菌肽是短杆菌肽的一种衍生物,其中在肽的末端羟基端引入了三个羧基。对人工脂质膜进行的实验表明,这种带负电荷的类似物以与短杆菌肽相似的方式形成离子渗透通道。如果仅将邻苯四甲酸根短杆菌肽添加到一种水溶液中,膜电导仍然很小,但如果在另一侧添加相同量的该物质,膜电导会增加几个数量级。根据通道的二聚体模型,在对称条件下膜电导在很宽的范围内与邻苯四甲酸根短杆菌肽水溶液浓度的平方成正比。在高离子强度下,邻苯四甲酸根短杆菌肽的单通道电导与短杆菌肽的单通道电导之比λPG/λG接近1,但在较小离子强度(0.01M)时增加超过五倍。这一观察结果可根据通道口附近固定负电荷的静电效应来解释。在邻苯四甲酸根短杆菌肽和短杆菌肽的混合物中,除了对应于纯化合物的电导阶跃外,还观察到中等大小的单位电导阶跃,这表明形成了杂化通道。如果将少量的短杆菌肽和邻苯四甲酸根短杆菌肽添加到膜的相对两侧,可能会形成具有优先取向的杂化通道。这些杂化通道在电流-电压特性上表现出明显的不对称性。

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