首页> 外文期刊>Proceedings of the National Academy of Sciences of the United States of America >VGJφ integration and excision mechanisms contribute to the genetic diversity of Vibrio cholerae epidemic strains
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VGJφ integration and excision mechanisms contribute to the genetic diversity of Vibrio cholerae epidemic strains

机译:VGJφ整合和切除机制有助于霍乱弧菌流行菌株的遗传多样性

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Most strains of Vibrio cholerae are not pathogenic or cause only local outbreaks of gastroenteritis. Acquisition of the capacity to produce the cholera toxin results from a lysogenic conversion event due to a filamentous bacteriophage, CTXφ. Two V. cholerae tyrosine recombinases that normally serve to resolve chromosome dimers, XerC and XerD, promote CTXφ integration by directly recombining the ssDNA genome of the phage with the dimer resolution site of either or both V. cholerae chromosomes. This smart mechanism renders the process irreversible. Many other filamentous vibriophages seem to attach to chromosome dimer resolution sites and participate in the rapid and continuous evolution of toxi-genic V. cholerae strains. We analyzed the molecular mechanism of integration of VGJφ, a representative of the largest family of these phages. We found that XerC and XerD promote the integration of VGJφ into a specific chromosome dimer resolution site, and that the dsDNA replicative form of the phage is recombined. We show that XerC and XerD can promote excision of the integrated prophage, and that this participates in the production of new extrachromosomal copies of the phage genome. We further show how hybrid molecules harboring the concatenated genomes of CTXφ and VGJφ can be produced efficiently. Finally, we discuss how the integration and excision mechanisms of VGJφ can explain the origin of recent epidemic V. cholerae strains.
机译:大多数霍乱弧菌菌株不是致病性的,或仅引起胃肠炎的局部暴发。产生霍乱毒素的能力的获得是由于丝状噬菌体CTXφ引起的溶源性转化事件。两种通常用于解析染色体二聚体的霍乱弧菌酪氨酸重组酶XerC和XerD,通过直接将噬菌体的ssDNA基因组与霍乱弧菌染色体之一或两个的二聚体解析位点重组来促进CTXφ整合。这种聪明的机制使过程不可逆。许多其他丝状噬菌体似乎附着在染色体二聚体分辨位点上,并参与有毒的霍乱弧菌菌株的快速连续进化。我们分析了VGJφ(这些噬菌体最大家族的代表)整合的分子机制。我们发现XerC和XerD促进VGJφ整合到特定的染色体二聚体分辨位点,并且噬菌体的dsDNA复制形式被重组。我们表明,XerC和XerD可以促进整合的原噬菌体的切除,并且它参与了噬菌体基因组的新染色体外拷贝的生产。我们进一步展示了如何有效地产生包含CTXφ和VGJφ的级联基因组的杂合分子。最后,我们讨论了VGJφ的整合和切除机制如何解释最近流行的霍乱弧菌菌株的起源。

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