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鼠伤寒沙门氏菌寡肽通透酶的分子特征

Molecular characterization of the oligopeptide permease of Salmonella typhimurium.

作者信息

Hiles I D, Gallagher M P, Jamieson D J, Higgins C F

机构信息

Department of Biochemistry, University of Dundee, Scotland.

出版信息

J Mol Biol. 1987 May 5;195(1):125-42. doi: 10.1016/0022-2836(87)90332-9.

Abstract

The oligopeptide permease (Opp) of Salmonella typhimurium is a periplasmic binding protein-dependent transport system and handles any peptides containing from two to five amino acid residues. Opp plays an important nutritional role and is also required for the recycling of cell wall peptides. We have determined the nucleotide sequence of the opp operon. In addition to the four opp genes identified previously by genetic means (oppABCD) a fifth gene, oppF, is shown to be cotranscribed as part of the opp operon. Using reverse genetics, we show that oppF also encodes an essential component of the Opp transport system. The five proteins, OppABCDF, are shown to be the only proteins required for Opp function. Regulation of opp expression and of the differential expression of genes within the operon is investigated. We have devised a simple means of constructing lacZ gene fusions to any S. typhimurium chromosomal gene in vivo, using derivatives of bacteriophage Mu. Using this procedure, opp-lacZ gene fusions were selected. The resultant Opp-LacZ hybrid proteins were used to show that OppB, OppC and OppD are membrane-associated proteins. A detailed comparison of the Opp components with those of other binding protein-dependent transport systems provides insight into the mechanisms and evolution of these transport systems.

摘要

鼠伤寒沙门氏菌的寡肽通透酶(Opp)是一种依赖周质结合蛋白的转运系统,可处理任何含有2至5个氨基酸残基的肽。Opp发挥着重要的营养作用,也是细胞壁肽循环利用所必需的。我们已经确定了opp操纵子的核苷酸序列。除了先前通过遗传学方法鉴定的四个opp基因(oppABCD)外,第五个基因oppF被证明与opp操纵子一起共转录。通过反向遗传学,我们表明oppF也编码Opp转运系统的一个必需组分。OppABCDF这五种蛋白质被证明是Opp功能所需的仅有的蛋白质。我们研究了opp表达的调控以及操纵子内基因的差异表达。我们设计了一种利用噬菌体Mu衍生物在体内构建与任何鼠伤寒沙门氏菌染色体基因的lacZ基因融合体的简单方法。使用这个程序,我们筛选到了opp-lacZ基因融合体。所得的Opp-LacZ杂合蛋白被用于证明OppB、OppC和OppD是膜相关蛋白。将Opp组分与其他依赖结合蛋白的转运系统的组分进行详细比较,有助于深入了解这些转运系统的机制和进化。

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