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首页> 外文期刊>Microbial Cell Factories >A novel prokaryotic vector for identification and selection of recombinants: Direct use of the vector for expression studies in E. coli
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A novel prokaryotic vector for identification and selection of recombinants: Direct use of the vector for expression studies in E. coli

机译:一种用于鉴定和选择重组体的新型原核载体:直接将该载体用于大肠杆菌中的表达研究

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Background The selection of bacterial recombinants that harbour a desired insert, has been a key factor in molecular cloning and a series of screening procedures need to be performed for selection of clones carrying the genes of interest. The conventional cloning techniques are reported to have problems such as screening high number of colonies, generation of false positives, setting up of control ligation mix with vector alone etc. Results We describe the development of a novel dual cloning/expression vector, which enables to screen the recombinants directly and expression of the gene of interest. The vector contains Green fluorescence protein (GFP) as the reporter gene and is constructed in such a way that the E. coli cells upon transformation with this vector does not show any fluorescence, but readily fluoresce upon insertion of a foreign gene of interest. The same construct could be easily used for screening of the clones and expression studies by mere switching to specific hosts. Conclusions This is the first vector reported that takes the property of colour or fluorescence to be achieved only upon cloning while all the other vectors available commercially show loss of colour or loss of fluorescence upon cloning. As the fluorescence of GFP depends on the solubility of the protein, the intensity of the fluorescence would also indicate the extent of solubility of the expressed target protein.
机译:背景技术具有所需插入物的细菌重组体的选择一直是分子克隆的关键因素,需要进行一系列筛选程序来选择携带目的基因的克隆。据报道,传统的克隆技术存在以下问题,例如筛选大量菌落,假阳性的产生,仅使用载体建立对照连接混合物等。结果我们描述了新型双重克隆/表达载体的开发,该载体能够实现直接筛选重组子并表达目的基因。该载体含有绿色荧光蛋白(GFP)作为报告基因,并且以这样的方式构建,使得用该载体转化的大肠杆菌细胞不显示任何荧光,但是在插入感兴趣的外源基因时很容易发出荧光。只需切换到特定宿主,同一构建体就可以轻松用于克隆的筛选和表达研究。结论这是第一个报道的只有在克隆时才能实现颜色或荧光特性的载体,而所有其他可商购的载体在克隆时却显示出颜色或荧光的丧失。由于GFP的荧光取决于蛋白质的溶解度,因此荧光强度还将表明表达的目标蛋白质的溶解度。

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