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Three New Integration Vectors and Fluorescent Proteins for Use in the Opportunistic Human Pathogen Streptococcus pneumoniae

机译:三种新的整合载体和荧光蛋白用于机会性人类病原体肺炎链球菌

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摘要

Here, we describe the creation of three integration vectors, pPEPX, pPEPY and pPEPZ, for use with the opportunistic human pathogen Streptococcus pneumoniae. The constructed vectors, named PEP for Pneumococcal Engineering Platform (PEP), employ an IPTG-inducible promoter and BglBrick and BglFusion compatible multiple cloning sites allowing for fast and interchangeable cloning. PEP plasmids replicate in Escherichia coli and harbor integration sites that have homology in a large set of pneumococcal strains, including recent clinical isolates. In addition, several options of antibiotic resistance markers are available, even allowing for selection in multidrug resistant clinical isolates. The transformation efficiency of these PEP vectors as well as their ability to be expressed simultaneously was tested. Two of the three PEP vectors share homology of the integration regions with over half of the S. pneumoniae genomes examined. Transformation efficiency varied among PEP vectors based on the length of the homology regions, but all were highly transformable and can be integrated simultaneously in strain D39V. Vectors used for pneumococcal cloning are an important tool for researchers for a wide range of uses. The PEP vectors described are of particular use because they have been designed to allow for easy transfer of genes between vectors as well as integrating into transcriptionally silent areas of the chromosome. In addition, we demonstrate the successful production of several new spectrally distinct fluorescent proteins (mTurquoise2, mNeonGreen and mScarlet-I) from the PEP vectors. The PEP vectors and newly described fluorescent proteins will expand the genetic toolbox for pneumococcal researchers and aid future discoveries.
机译:在这里,我们描述了三种整合载体pPEPX,pPEPY和pPEPZ的创建,以与机会性人类病原体肺炎链球菌一起使用。所构建的载体被命名为肺炎球菌工程平台(PEP)的PEP,采用IPTG诱导型启动子以及BglBrick和BglFusion兼容的多个克隆位点,从而实现快速且可互换的克隆。 PEP质粒在大肠杆菌中复制,并在大量肺炎球菌菌株(包括最近的临床分离株)中具有同源性的整合位点。此外,还有多种抗生素抗性标记物可供选择,甚至可以选择具有多重耐药性的临床分离株。测试了这些PEP载体的转化效率以及它们同时表达的能力。三种PEP载体中的两种与检测的肺炎链球菌基因组一半以上具有整合区域的同源性。根据同源区域的长度,PEP载体之间的转化效率各不相同,但是它们都具有很高的可转化性,可以同时整合到菌株D39V中。用于肺炎球菌克隆的载体是研究人员广泛应用的重要工具。所描述的PEP载体特别有用,因为它们已被设计为允许在载体之间轻松转移基因以及整合到染色体的转录沉默区域中。另外,我们证明了从PEP载体成功生产了几种新的光谱不同的荧光蛋白(mTurquoise2,mNeonGreen和mScarlet-I)。 PEP载体和新近描述的荧光蛋白将扩展肺炎球菌研究人员的遗传工具箱,并有助于将来的发现。

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