Rosenbusch J P
Biozentrum der Universität Basel, Switzerland.
Biophys Chem. 1988 Feb;29(1-2):79-84. doi: 10.1016/0301-4622(88)87026-1.
The mechanism of the highly efficient and precisely regulated ion flux across axonal membranes has usually been considered as free diffusion in aqueous channels. The evidence for single-file mechanisms has not been convincing. In this report, solid-state ionic conductance is proposed as an alternative mechanism. The sequence of the Na+ 'channel' protein is scrutinized for elements that may form an ionic core that is well insulated by a hydrophobic mantle from other segments of the protein. A specific structure is proposed that may correspond to ionic lattices as they are known to exist in crystals of small, inorganic electrolytes that exhibit considerable ionic conduction.
高效且精确调控的离子通过轴突膜的机制通常被认为是在水性通道中的自由扩散。关于单排机制的证据并不令人信服。在本报告中,提出固态离子电导作为一种替代机制。对Na⁺“通道”蛋白的序列进行仔细研究,以寻找可能形成离子核心的元素,该离子核心被疏水外壳与蛋白质的其他部分很好地隔离。提出了一种特定结构,它可能对应于离子晶格,正如在表现出相当离子传导性的小型无机电解质晶体中已知存在的那样。