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利用枯草芽孢杆菌sacB基因和温度敏感型pSC101复制子在大肠杆菌中进行等位基因交换。

Allelic exchange in Escherichia coli using the Bacillus subtilis sacB gene and a temperature-sensitive pSC101 replicon.

作者信息

Blomfield I C, Vaughn V, Rest R F, Eisenstein B I

机构信息

Department of Microbiology and Immunology, University of Michigan Medical School, Ann Arbor 48109.

出版信息

Mol Microbiol. 1991 Jun;5(6):1447-57. doi: 10.1111/j.1365-2958.1991.tb00791.x.

DOI:10.1111/j.1365-2958.1991.tb00791.x
PMID:1686293
Abstract

To facilitate efficient allelic exchange of genetic information into a wild-type strain background, we improved upon and merged approaches using a temperature-sensitive plasmid and a counter-selectable marker in the chromosome. We first constructed intermediate strains of Escherichia coli K12 in which we replaced wild-type chromosomal sequences, at either the fimB-A or lacZ-A loci, with a newly constituted DNA cassette. The cassette consists of the sacB gene from Bacillus subtilis and the neomycin (kanamycin) resistance gene of Tn5, but, unlike another similar cassette, it lacks IS1 sequences. We found that sucrose sensitivity was highly dependent on incubation temperature and sodium chloride concentration. The DNA to be exchanged into the chromosome was first cloned into derivatives of plasmid pMAK705, a temperature-sensitive pSC101 replicon. The exchanges were carried out in two steps, first selecting for plasmid integration by standard techniques. In the second step, we grew the plasmid integrates under non-selective conditions at 42 degrees C, and then in the presence of sucrose at 30 degrees C, allowing positive selection for both plasmid excision and curing. Despite marked locus-specific strain differences in sucrose sensitivity and in the growth retardation due to the integrated plasmids, the protocol permitted highly efficient exchange of cloned DNA into either the fim or lac chromosomal loci. This procedure should allow the exchange of any DNA segment, in addition to the original or mutant allelic DNA, into any non-essential parts of the E. coli chromosome.

摘要

为了促进将遗传信息高效地等位基因交换到野生型菌株背景中,我们改进并合并了使用温度敏感型质粒和染色体上的反选择标记的方法。我们首先构建了大肠杆菌K12的中间菌株,在其中我们用新构建的DNA盒替换了fimB-A或lacZ-A位点的野生型染色体序列。该盒由来自枯草芽孢杆菌的sacB基因和Tn5的新霉素(卡那霉素)抗性基因组成,但与另一个类似的盒不同,它缺乏IS1序列。我们发现蔗糖敏感性高度依赖于孵育温度和氯化钠浓度。要交换到染色体中的DNA首先被克隆到质粒pMAK705的衍生物中,pMAK705是一种温度敏感型pSC101复制子。交换分两步进行,首先通过标准技术选择质粒整合。在第二步中,我们在42℃的非选择性条件下培养整合了质粒的菌株,然后在30℃的蔗糖存在下培养,从而对质粒切除和消除进行正向选择。尽管在蔗糖敏感性以及由于整合质粒导致的生长迟缓方面存在明显的位点特异性菌株差异,但该方案允许将克隆的DNA高效地交换到fim或lac染色体位点。除了原始或突变的等位基因DNA之外,这个程序应该允许将任何DNA片段交换到大肠杆菌染色体的任何非必需部分。

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