Roberts E, Tamaru M
Department of Neurobiochemistry, Beckman Research Institute of City of Hope, Duarte, California 91010.
Neurochem Res. 1992 May;17(5):509-28. doi: 10.1007/BF00969899.
A topographic model of the ligand binding site of the choline transporter was deduced from inhibition studies with the help of CPK molecular models. It is posited that there are two identical or closely similar hydrophilic anionic sites separated from each other by an hinged, essentially planar but conformationally flexible cationic hydrophobic domain. Subsequently to attachment of external choline to either one of the anionic sites, both sites cooperate in enveloping the ligand by a Venus fly-trap mechanism. This leads to rapid configurational changes by which the closed-liganded form of the transporter opens up to the interior to release the bound choline. Intracellular K+, a ligand for the choline-binding site, is proposed to be counter-transported by a reversal of the above mechanism.
借助CPK分子模型,通过抑制研究推导得出胆碱转运体配体结合位点的拓扑模型。假定存在两个相同或极为相似的亲水性阴离子位点,它们由一个铰链连接的、基本呈平面状但构象灵活的阳离子疏水结构域彼此分隔。外部胆碱附着于任一阴离子位点后,两个位点通过捕蝇草机制协同包裹配体。这会导致快速的构型变化,借此转运体的闭合配体形式向内部开放以释放结合的胆碱。细胞内钾离子作为胆碱结合位点的配体,被认为是通过上述机制的逆转进行反向转运。