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孔蛋白选择性的分子基础:大肠杆菌K-12的OmpC-PhoE和OmpF-PhoE杂合蛋白的膜实验

Molecular basis of porin selectivity: membrane experiments with OmpC-PhoE and OmpF-PhoE hybrid proteins of Escherichia coli K-12.

作者信息

Benz R, Schmid A, Van der Ley P, Tommassen J

机构信息

Lehrstuhl für Biotechnologie, Universität Würzburg, F.R.G.

出版信息

Biochim Biophys Acta. 1989 May 19;981(1):8-14. doi: 10.1016/0005-2736(89)90075-8.

Abstract

Lipid bilayer experiments were performed with one OmpF-PhoE and several OmpC-PhoE hybrid porins of Escherichia coli K-12. All hybrid pores had approximately the same pore-forming activity, which indicated that the structure of the pores remained essentially unchanged by the genetic manipulation. This result was supported by single-channel experiments because all pores had similar single-channel conductances in potassium chloride. Measurements with other salts indicated a drastic change in the ionic selectivity when the fusion site in the ompC-phoE hybrid genes passed along the sequence of the porins from the N-terminal to the C-terminal end. Selectivity measurements using zero-current membrane potentials showed that the selectivity suddenly changed from anion to cation selectivity when a relatively short portion from the N-terminal end of PhoE was replaced by the corresponding part of OmpC. The replacement of increasing portions led to an increase in the cation selectivity until that of OmpC was reached. The change in the anion to cation selectivity is correlated with exchange of lysine-18 and serine-28 by aspartic acids. The anion selectivity of the phosphate starvation-inducible PhoE porin is closely related to the presence of several lysines spread along the primary sequence of the polypeptide chain.

摘要

利用大肠杆菌K-12的一种OmpF-PhoE和几种OmpC-PhoE杂合孔蛋白进行了脂质双层实验。所有杂合孔具有大致相同的成孔活性,这表明通过基因操作孔的结构基本保持不变。单通道实验支持了这一结果,因为所有孔在氯化钾中具有相似的单通道电导。用其他盐进行的测量表明,当ompC-phoE杂合基因中的融合位点沿着孔蛋白序列从N端向C端移动时,离子选择性发生了剧烈变化。使用零电流膜电位进行的选择性测量表明,当PhoE N端相对较短的部分被OmpC的相应部分取代时,选择性突然从阴离子选择性转变为阳离子选择性。被取代部分的增加导致阳离子选择性增加,直到达到OmpC的阳离子选择性。阴离子到阳离子选择性的变化与赖氨酸-18和丝氨酸-28被天冬氨酸取代有关。磷酸盐饥饿诱导型PhoE孔蛋白的阴离子选择性与沿着多肽链一级序列分布的几个赖氨酸的存在密切相关。

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