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首页> 外文期刊>Journal of Molecular Biology >The C-terminal half of the colicin A pore-forming domain is active in vivo and in vitro
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The C-terminal half of the colicin A pore-forming domain is active in vivo and in vitro

机译:大肠菌素A孔形成域的C末端一半在体内和体外均具有活性

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摘要

The pore-forming domain of colicin A (pfColA) fused to a prokaryotic signal peptide (sp-pfColA) is transported across and inserts into the inner membrane of Escherichia coli from the periplasmic side and forms a functional channel. The soluble structure of pfColA consists of a ten-helix bundle containing a hydrophobic helical hairpin. Here, we generated a series of mutants in which an increasing number of sp-pfColA alpha -helices was deleted. These peptides were tested for their ability to form ion channels in vivo and in vitro. We found that the shortest sp-pfColA mutant protein that killed Escherichia coli was composed of the five last alpha -helices of sp-pfColA, whereas the shortest peptide that formed a channel in planar lipid bilayer membranes similar to that of intact pfColA was the protein composed of the last six alpha -helices. The peptide composed of the last five alpha -helices of pfColA generated a voltage-independent conductance in planar lipid bilayer with properties very different from that of intact pfColA. Thus, helices 1 to 4 are unnecessary for channel formation, while helix 5, or some part of it, is important but not absolutely necessary. Voltage-dependence of colicin is evidently controlled by the first four alpha -helices of pfColA. (C) 2001 Academic Press. [References: 33]
机译:与原核信号肽(sp-pfColA)融合的大肠菌素A(pfColA)的孔形成域被转运并从周质侧插入大肠杆菌的内膜并形成功能性通道。 pfColA的可溶性结构由包含疏水螺旋发夹的十螺旋束组成。在这里,我们生成了一系列突变体,其中删除了越来越多的sp-pfColAα-螺旋。测试了这些肽在体内和体外形成离子通道的能力。我们发现杀死大肠杆菌的最短的sp-pfColA突变蛋白由sp-pfColA的最后五个α-螺旋组成,而在平面脂质双层膜中形成与完整pfColA类似的通道的最短肽是该蛋白由最后六个alpha螺旋组成。由pfColA的最后五个α螺旋组成的肽在平面脂质双层中产生了电压无关的电导,其特性与完整的pfColA完全不同。因此,螺旋1至4对于形成通道是不必要的,而螺旋5或其一部分是重要的,但不是绝对必要的。大肠菌素的电压依赖性显然受pfColA的前四个α螺旋控制。 (C)2001学术出版社。 [参考:33]

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