首页> 外文期刊>Journal of bacteriology >Effect of the Abortive Infection Mechanism and Type III Toxin/Antitoxin System AbiQ on the Lytic Cycle of Lactococcus lactis Phages
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Effect of the Abortive Infection Mechanism and Type III Toxin/Antitoxin System AbiQ on the Lytic Cycle of Lactococcus lactis Phages

机译:流产感染机制和III型毒素/抗毒素系统AbiQ对乳酸乳球菌噬菌体裂解周期的影响

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To survive in phage-containing environments, bacteria have evolved an array of antiphage systems. Similarly, phages have overcome these hurdles through various means. Here, we investigated how phages are able to circumvent the Lactococcus lactis AbiQ system, a type III toxin-antitoxin with antiviral activities. Lactococcal phage escape mutants were obtained in the laboratory, and their genomes were sequenced. Three unrelated genes of unknown function were mutated in derivatives of three distinct lactococcal siphophages: orf38 of phage P008, m1 of phage bIL170, and e19 of phage c2. One-step growth curve experiments revealed that the phage mutations had a fitness cost while transcriptional analyses showed that AbiQ modified the early-expressed phage mRNA profiles. The L. lactis AbiQ system was also transferred into Escherichia coli MG1655 and tested against several coliphages. While AbiQ was efficient against phages T4 (Myoviridae) and T5 (Siphoviridae), escape mutants of only phage 2 (Myoviridae) could be isolated. Genome sequencing revealed a mutation in gene orf210, a putative DNA polymerase. Taking these observations together, different phage genes or gene products are targeted or involved in the AbiQ phenotype. Moreover, this antiviral system is active against various phage families infecting Gram-positive and Gram-negative bacteria. A model for the mode of action of AbiQ is proposed.
机译:为了在含有噬菌体的环境中生存,细菌已经进化出一系列的抗噬菌体系统。同样,噬菌体通过各种手段克服了这些障碍。在这里,我们调查了噬菌体如何规避乳酸乳球菌AbiQ系统,这是一种具有抗病毒活性的III型毒素-抗毒素。在实验室中获得了乳球菌噬菌体逃逸突变体,并对它们的基因组进行了测序。在三个截然不同的乳球菌噬菌体的衍生物中突变了三个功能未知的无关基因:噬菌体P008的 orf38 ,噬菌体bIL170的 m1 和噬菌体的 e19 噬菌体c2。一步生长曲线实验表明,噬菌体突变具有适应性代价,而转录分析表明,AbiQ修饰了早期表达的噬菌体mRNA谱。乳酸乳球菌AbiQ系统也被转移到大肠杆菌MG1655中,并针对几种噬菌体进行了测试。虽然AbiQ对噬菌体T4(肌病毒科)和T5(剑叶病毒科)有效,但可以分离出仅噬菌体2(肌病毒科)的逃避突变体。基因组测序结果显示基因 orf210 是一种假定的DNA聚合酶突变。综合这些观察结果,将不同的噬菌体基因或基因产物作为目标或参与AbiQ表型。而且,该抗病毒系统对感染革兰氏阳性和革兰氏阴性细菌的各种噬菌体家族具有活性。提出了AbiQ作用方式的模型。

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