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利用天然flp基因在链霉菌属中产生框内无标记突变

Use of the native flp gene to generate in-frame unmarked mutations in Streptomyces spp.

作者信息

Zelyas Nathan, Tahlan Kapil, Jensen Susan E

机构信息

Department of Biological Sciences, University of Alberta, Edmonton, Alberta, Canada T6G 2E9.

出版信息

Gene. 2009 Aug 15;443(1-2):48-54. doi: 10.1016/j.gene.2009.03.022. Epub 2009 May 13.

DOI:10.1016/j.gene.2009.03.022
PMID:19446014
Abstract

The generation of unmarked deletion mutants free from polar effects on downstream genes is typically a lengthy and arduous process in Streptomyces spp. The use of FLP recombinase can greatly facilitate this process when combined with established polymerase chain reaction (PCR)-targeting techniques. In vivo production of FLP within Streptomyces cells would streamline the process further, but expression of flp in Streptomyces spp. has proven difficult to achieve. Two Escherichia coli-Streptomyces shuttle plasmids that constitutively express native flp within Streptomyces cells were constructed and tested within Streptomyces clavuligerus and Streptomyces coelicolor to produce in-frame mutations in genes associated with antibiotic production. Only one of the flp-expressing plasmids was functional in S. clavuligerus, but both functioned in S. coelicolor and both were easily lost from cells. Although a separate study has recently shown successful expression of a synthetic flp gene in Streptomyces, this is the first report of expression of the native flp gene within Streptomyces spp. Through the use of these plasmids to generate unmarked deletion mutants, C7p was shown to be essential for production of 5S clavams in S. clavuligerus, and RedJ was demonstrated to be important for optimal undecylprodigiosin biosynthesis in S. coelicolor but traces of the antibiotic were still produced in a DeltaredJ mutant.

摘要

在链霉菌属中,生成对下游基因无极性效应的无标记缺失突变体通常是一个漫长而艰巨的过程。当与成熟的聚合酶链反应(PCR)靶向技术结合使用时,FLP重组酶的应用可以极大地促进这一过程。在链霉菌细胞内体内产生FLP将进一步简化该过程,但在链霉菌属中表达flp已证明难以实现。构建了两种在链霉菌细胞内组成型表达天然flp的大肠杆菌-链霉菌穿梭质粒,并在克拉维链霉菌和天蓝色链霉菌中进行测试,以在与抗生素生产相关的基因中产生框内突变。只有一种表达flp的质粒在克拉维链霉菌中起作用,但两种质粒在天蓝色链霉菌中均起作用,并且都很容易从细胞中丢失。尽管最近一项单独的研究表明合成flp基因在链霉菌中成功表达,但这是天然flp基因在链霉菌属中表达的首次报道。通过使用这些质粒产生无标记缺失突变体,已证明C7p对克拉维链霉菌中5S棒酸的产生至关重要,并且已证明RedJ对天蓝色链霉菌中最佳十一烷基灵菌红素生物合成很重要,但在DeltaredJ突变体中仍产生痕量的抗生素。

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