Läuger P
Biochim Biophys Acta. 1979 Mar 23;552(1):143-61. doi: 10.1016/0005-2736(79)90253-0.
A model of active ion transport is analyzed in which an essential part of the pumps molecule is an ion channel. Ion translocation in the channel is described as a series of jumps between binding sites which are separated by energy barriers. Pumping action results from a transient energy-dependent modification of the barrier structure of the channel and requires only minor conformational changes of the pump molecule. This model is applied to the light-driven proton pump of Halobacterium and to redox-coupled proton pumps in the mitochondrial respiratory chain. Similar considerations may be used to describe ATP-dependent ion transport.
分析了一种主动离子转运模型,其中泵分子的一个重要部分是离子通道。通道中的离子转运被描述为在由能垒分隔的结合位点之间的一系列跳跃。泵送作用源于通道能垒结构的瞬时能量依赖性修饰,并且仅需要泵分子的微小构象变化。该模型应用于嗜盐菌的光驱动质子泵以及线粒体呼吸链中的氧化还原偶联质子泵。类似的考虑因素可用于描述ATP依赖性离子转运。