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首页> 外文期刊>BMC research notes >A single copy integration vector that integrates at an engineered site on the Staphylococcus aureus chromosome
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A single copy integration vector that integrates at an engineered site on the Staphylococcus aureus chromosome

机译:在金黄色葡萄球菌染色体的工程位点整合的单拷贝整合载体

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Background Single-copy integration vectors based upon the site-specific recombination systems of bacteriophage are invaluable tools in the study of bacterial pathogenesis. The utility of such vectors is often limited, however, by the fact that integration often results in the inactivation of bacterial genes or has undesirable effects on gene transcription. The aim of this study is to develop an integration vector that does not have a detectable effect on gene transcription upon integration. Findings We have developed a single-copy integration system that enables the cloning vector to integrate at a specific engineered site, within an untranscribed intergenic region, in the chromosome of Staphylococcus aureus . This system is based on the lysogenic phage L54a site-specific recombination system in which the L54a phage ( attP ) and chromosome ( attB ) attachment sites, which share an 18-bp identical core sequence, were modified with identical mutations. The integration vector, pLL102, was constructed to contain the modified L54a attP site ( attP 2) that was altered at 5 nucleotide positions within the core sequence. In the recipient strain, the similarly modified attB site ( attB 2) was inserted in an intergenic region devoid of detectable transcription read-through. Integration of the vector, which is unable to replicate in S. aureus extrachromosomally, was achieved by providing the L54a integrase gene in a plasmid in the recipient. We showed that pLL102 integrated specifically at the engineered site rather than at the native L54a attB site and that integration did not have a significant effect on transcription of genes immediately upstream or downstream of the integration site. Conclusions In this work, we describe an E. coli - S. aureus shuttle vector that can be used to introduce any cloned gene into the S. aureus chromosome at a select site without affecting gene expression. The vector should be useful for genetic manipulation of S. aureus and for marking strains for in vivo studies.
机译:背景基于噬菌体的位点特异性重组系统的单拷贝整合载体是研究细菌发病机理的宝贵工具。然而,由于整合经常导致细菌基因失活或对基因转录产生不良影响,因此这种载体的实用性通常受到限制。这项研究的目的是开发一种整合载体,该整合载体在整合后不会对基因转录产生可检测的影响。发现我们开发了一种单拷贝整合系统,该系统可使克隆载体整合在金黄色葡萄球菌染色体未转录的基因间区域内的特定工程位点处。该系统基于溶原性噬菌体L54a位点特异性重组系统,其中具有相同18 bp相同核心序列的L54a噬菌体(attP)和染色体(attB)附着位点经过了相同的突变修饰。构建整合载体pLL102,使其包含修饰的L54a attP位点(attP 2),该位点在核心序列的5个核苷酸位置发生了改变。在受体菌株中,类似修饰的attB位点(attB 2)被插入到缺乏可检测的转录通读的基因间区域中。通过在受体的质粒中提供L54a整合酶基因,实现了载体的整合,该载体无法在染色体外的金黄色葡萄球菌中复制。我们显示pLL102特别整合在工程位点而不是天然L54a attB位点,并且整合对整合位点上游或下游的基因转录没有显着影响。结论在这项工作中,我们描述了一种大肠杆菌-金黄色葡萄球菌穿梭载体,该载体可用于在选定位点将任何克隆的基因导入金黄色葡萄球菌染色体,而不会影响基因表达。该载体应可用于金黄色葡萄球菌的遗传操作和用于体内研究的标记菌株。

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