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大肠杆菌素E1离子通道的动态特性。

Dynamic properties of the colicin E1 ion channel.

作者信息

Cramer W A, Zhang Y L, Schendel S, Merrill A R, Song H Y, Stauffacher C V, Cohen F S

机构信息

Department of Biological Sciences, Lilly Hall of Life Sciences, Purdue University, West Lafayette, IN.

出版信息

FEMS Microbiol Immunol. 1992 Sep;5(1-3):71-81. doi: 10.1111/j.1574-6968.1992.tb05889.x.

Abstract

The mechanism of channel formation and action of channel-forming colicins is a paradigm for the study of dynamic aspects of membrane-protein interactions. The following experimental results concerning interaction of the colicin E1 channel domain with target membranes, in vitro and in vivo, are discussed: (1) the nature of the translocation-competent state of the channel-forming domain; (2) unfolding of the colicin channel peptide during in vitro binding and anchoring of the channel to liposome membranes at acidic pH; (3) reversal of channel peptide binding to liposomes by an alkaline-directed pH shift; (4) voltage-driven translocation and gating of the ion channel, discussed in the context of a four-helix model for a monomeric channel; (5) rescue of colicin-treated cells by high levels of external K+; (6) trypsin rescue of cells depolarized by the colicin ion channel; and (7) interaction of the channel domain with its immunity protein.

摘要

形成通道的大肠杆菌素的通道形成机制及作用是研究膜蛋白相互作用动态方面的一个范例。本文讨论了以下关于大肠杆菌素E1通道结构域与靶膜在体外和体内相互作用的实验结果:(1)通道形成结构域的易位活性状态的性质;(2)在酸性pH条件下,通道肽在体外与脂质体膜结合并锚定过程中的解折叠;(3)通过碱性pH转变使通道肽与脂质体的结合发生逆转;(4)在单体通道的四螺旋模型背景下讨论离子通道的电压驱动易位和门控;(5)高浓度外部K⁺对经大肠杆菌素处理的细胞的拯救作用;(6)胰蛋白酶对被大肠杆菌素离子通道去极化的细胞的拯救作用;以及(7)通道结构域与其免疫蛋白的相互作用。

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