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A Novel Mobilizing Tool Based on the Conjugative Transfer System of the IncM Plasmid pCTX-M3

机译:一种基于IncM质粒PCTX-M3共轭转移系统的新型动员工具

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Conjugative plasmids are the main players in horizontal gene transfer in Gram-negative bacteria. DNA transfer tools constructed on the basis of such plasmids enable gene manipulation even in strains of clinical or environmental origin, which are often difficult to work with. The conjugation system of the IncM plasmid pCTX-M3 isolated from a clinical strain of Citrobacter freundii has been shown to enable efficient mobilization of oriT _(pCTX-M3)-bearing plasmids into a broad range of hosts comprising Alpha -, Beta -, and Gammaproteobacteria . We constructed a helper plasmid, pMOBS, mediating such mobilization with an efficiency up to 1,000-fold higher than that achieved with native pCTX-M3. We also constructed Escherichia coli donor strains with chromosome-integrated conjugative transfer genes: S14 and S15, devoid of one putative regulator ( orf35 ) of the pCTX-M3 tra genes, and S25 and S26, devoid of two putative regulators ( orf35 and orf36 ) of the pCTX-M3 tra genes. Strains S14 and S15 and strains S25 and S26 are, respectively, up to 100 and 1,000 times more efficient in mobilization than pCTX-M3. Moreover, they also enable plasmid mobilization into the Gram-positive bacteria Bacillus subtilis and Lactococcus lactis . Additionally, the constructed E. coli strains carried no antibiotic resistance genes that are present in pCTX-M3 to facilitate manipulations with antibiotic-resistant recipient strains, such as those of clinical origin. To demonstrate possible application of the constructed tool, an antibacterial conjugation-based system was designed. Strain S26 was used for introduction of a mobilizable plasmid coding for a toxin, resulting in the elimination of over 90% of recipient E. coli cells.IMPORTANCE The conjugation of donor and recipient bacterial cells resulting in conjugative transfer of mobilizable plasmids is the preferred method enabling the introduction of DNA into strains for which other transfer methods are difficult to establish (e.g., clinical strains). We have constructed E. coli strains carrying the conjugation system of the IncM plasmid pCTX-M3 integrated into the chromosome. To increase the mobilization efficiency up to 1,000-fold, two putative regulators of this system, orf35 and orf36 , were disabled. The constructed strains broaden the repertoire of tools for the introduction of DNA into the Gram-negative Alpha -, Beta -, and Gammaproteobacteria , as well as into Gram-positive bacteria such as Bacillus subtilis and Lactococcus lactis . The antibacterial procedure based on conjugation with the use of the orf35 - and orf36 -deficient strain lowered the recipient cell number by over 90% owing to the mobilizable plasmid-encoded toxin.
机译:共轭质粒是革兰氏阴性细菌水平基因转移的主要球员。在这种质粒的基础上构建的DNA转移工具使得即使在临床或环境来源的菌株中也能够进行基因操纵,这通常难以使​​用。已显示出从柑橘杆菌的临床菌株中分离的IncM质粒pCTX-M3的共轭系统,以使ORIT _(PCTX-M3) - BEAKING质粒能够高效动集到包含α,β和β的广泛宿主中丙曲曲杆菌。我们构建了辅助质粒,PMOB,介导的效率高达1,000倍的效率,比用天然PCTX-M3实现。我们还构建了具有染色体聚合的缀合物转移基因的大肠杆菌供体菌株:S14和S15,缺乏PCTX-M3 TRA基因的一个推定调节剂(ORF35),以及S25和S26,缺乏两个推定的调节剂(ORF35和ORF36) PCTX-M3 TRA基因。菌株S14和S15和菌株S25和S26分别比PCTX-M3更有效地高达100和1,000倍。此外,它们还将质粒动员转化为革兰氏阳性细菌枯草芽孢杆菌和乳乳球菌乳酸乳杆菌。另外,所构建的大肠杆菌菌株不携带PCTX-M3中存在的抗生素抗性基因,以促进用抗生素抗性受体菌株的操纵,例如临床来源的抗生素。为了证明所构建的工具可能的应用,设计了一种基于抗菌共轭的系统。菌株S26用于引入毒素的可悲的质粒编码,导致消除超过90%的受体大肠杆菌细胞。分析供体和受体细菌细胞的共轭导致可移动性质粒的共轭转移是优选的方法使DNA引入难以建立其他转移方法的菌株(例如,临床菌株)。我们已经建造了将IncM质粒PCTX-M3的共轭系统携带的大肠杆菌菌株构成了整合到染色体中的缀合系统。为了将动员效率增加到1,000倍,禁用了该系统的两个推定调节剂,ORF35和ORF36。构造的菌株拓宽了将DNA引入革兰氏阴性α,β - ,γ-,γ-,γ-,γ-,γ-阳性细菌等工具,以及枯草芽孢杆菌和乳酸乳杆菌乳酸乳杆菌。由于可移动的质粒编码毒素,基于使用ORF35 - 和ORF36 - 和ORF36 -DEFIST菌株的抗菌程序将受体细胞数降低超过90%。

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