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对大肠杆菌K-12外膜蛋白PhoE细胞表面暴露区域进行插入诱变。

Insertion mutagenesis on a cell-surface-exposed region of outer membrane protein PhoE of Escherichia coli K-12.

作者信息

Agterberg M, Benz R, Tommassen J

机构信息

Institute of Molecular Biology and Medical Biotechnology, University of Utrecht, The Netherlands.

出版信息

Eur J Biochem. 1987 Nov 16;169(1):65-71. doi: 10.1111/j.1432-1033.1987.tb13581.x.

Abstract

Amino acid residue arginine-158 of the outer membrane protein PhoE of Escherichia coli K-12 has been shown to be cell-surface-exposed [Korteland et al. (1985) Eur. J. Biochem. 152, 691-697]. To study the effects of small insertions in this region of the protein on its biogenesis and characteristics, a unique restriction site was created by site-directed mutagenesis in a plasmid carrying the phoE gene and oligonucleotides of 12-74 bp were inserted. The insertions did not interfere with incorporation into the outer membrane since (a) several monoclonal antibodies, directed against the cell-surface-exposed part of PhoE protein, bound to whole cells producing the altered proteins and (b) the proteins formed functional pores for the uptake of beta-lactam antibiotics. The binding of one monoclonal antibody and of the PhoE-specific phages TC45 and TC45hrN3 was disturbed by the insertions, showing that this region of the protein is immunogenic and is involved in the binding of both of these phages. The functioning of the mutant pores was characterized both in vivo by studying the uptake of beta-lactam antibiotics and in vitro after the reconstitution of the proteins in black lipid films. The pore characteristics changed depending on the nature of the inserted amino acids. Addition of a negatively charged amino acid resulted in decreased anion-selectivity, whereas insertion of a positive charge and deletion of a negative charge had only a small influence.

摘要

大肠杆菌K-12外膜蛋白PhoE的氨基酸残基精氨酸-158已被证明暴露于细胞表面[Korteland等人(1985年),《欧洲生物化学杂志》152卷,691 - 697页]。为了研究该蛋白这一区域的小插入片段对其生物合成和特性的影响,通过定点诱变在携带phoE基因的质粒中创建了一个独特的限制位点,并插入了12 - 74 bp的寡核苷酸。这些插入片段不干扰其整合到外膜中,原因如下:(a)几种针对PhoE蛋白细胞表面暴露部分的单克隆抗体与产生改变蛋白的全细胞结合;(b)这些蛋白形成了用于摄取β-内酰胺抗生素的功能性孔道。插入片段干扰了一种单克隆抗体以及PhoE特异性噬菌体TC45和TC45hrN3的结合,表明该蛋白的这一区域具有免疫原性,并且参与了这两种噬菌体的结合。通过研究β-内酰胺抗生素的摄取在体内对突变孔道的功能进行了表征,并在将蛋白重建于黑色脂质膜后在体外进行了表征。孔道特性根据插入氨基酸的性质而改变。添加带负电荷的氨基酸导致阴离子选择性降低,而插入正电荷和缺失负电荷的影响较小。

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