Busath D, Szabo G
Department of Physiology and Biophysics, University of Texas Medical Branch, Galveston 77550.
Biophys J. 1988 May;53(5):689-95. doi: 10.1016/S0006-3495(88)83150-3.
Weakly conductive, atypical channels were observed to form from highly purified Val1-gramicidin A in planar lipid bilayer membranes. The structure of these low-conductance channels (minis) was investigated by a detailed study of their channel forming characteristics. The possibility that minis originate from primary structural analogs or degradation products of gramicidin was considered and ruled out. In particular, spontaneous conductance changes in single channels demonstrated that minis can derive directly and reversibly from "standard" channels having the most common conductance level. The fraction of channels which are minis does not vary with changes in membrane gramicidin concentration, indicating that mini and standard channels have the same molecularity, that is, both are dimers. The mean lifetime of mini channels is only slightly shorter than that of standard channels, indicating that the six hydrogen bonds that stabilize the head-to-head dimer are minimally affected in minis. The fraction of channels which are minis is unaffected by the ionic strength, ionic composition, or pH of the bathing solution; it is also unaffected by the lipid composition of the bilayer. These findings are consistent with the hypothesis that minis arise from minor changes in the conformation of the Val1-gramicidin A molecule near the channel entrance or exit.
在平面脂质双层膜中,观察到由高度纯化的Val1-短杆菌肽A形成的弱导电非典型通道。通过对这些低电导通道(微通道)的通道形成特性进行详细研究,对其结构进行了探究。研究并排除了微通道源自短杆菌肽的一级结构类似物或降解产物的可能性。特别是,单通道中的自发电导变化表明,微通道可以直接且可逆地源自具有最常见电导水平的“标准”通道。微通道的比例不会随膜中短杆菌肽浓度的变化而变化,这表明微通道和标准通道具有相同的分子数,即两者均为二聚体。微通道的平均寿命仅比标准通道略短,这表明稳定头对头二聚体的六个氢键在微通道中受到的影响最小。微通道的比例不受浴液的离子强度、离子组成或pH值的影响;它也不受双层脂质组成的影响。这些发现与微通道源自通道入口或出口附近Val1-短杆菌肽A分子构象的微小变化这一假设一致。