首页> 外文期刊>Infection and immunity >Generation of targeted nonpolar gene insertions and operon fusions in Pasteurella haemolytica and creation of a strain that produces and secretes inactive leukotoxin.
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Generation of targeted nonpolar gene insertions and operon fusions in Pasteurella haemolytica and creation of a strain that produces and secretes inactive leukotoxin.

机译:溶血巴斯德氏菌中靶向性非极性基因插入和操纵子融合的产生,以及产生产生并分泌失活的白细胞毒素的菌株的产生。

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An efficient method for targeted gene inactivation and generation of chromosomal gene fusions in Pasteurella haemolytica has been devised and used to create an lktC::cat operon fusion by allelic exchange at the leukotoxin gene cluster (lktCABD). A copy of the lktC gene was insertionally inactivated by using a nonpolar, promoterless cat cassette and then delivered into P. haemolytica on a shuttle vector. Plasmid incompatibility was used to detect clones where double recombination events had occurred at the chromosomal locus. The insertion in lktC did not affect expression of the downstream genes, and the mutant strain secreted an antigenic proleukotoxin that was neither leukotoxic nor hemolytic. Expression of the lktC gene in trans restored the wild-type phenotype, confirming that LktC is required for activation of the proleukotoxin to the mature leukotoxin. Construction of the lktC::cat operon fusion allowed us to quantitate leukotoxin promoter activity in P. haemolytica and to demonstrate that transcription was maximal during early logarithmic growth phase but was reduced following entry into late logarithmic phase. This allelic exchange system should be useful for future genetic studies in P. haemolytica and could potentially be applied to other members of Haemophilus-Actinobacillus-Pasteurella family, where genetic manipulation is limited.
机译:已经设计了一种有效的方法,用于在溶血巴斯德氏菌中进行靶向基因失活和生成染色体基因融合体,并将其用于通过在白细胞毒素基因簇(lktCABD)上进行等位基因交换来创建lktC :: cat操纵子融合体。使用非极性无启动子的猫盒将lktC基因的一个拷贝插入,使其失活,然后在穿梭载体上将其溶入溶血性毕赤酵母中。质粒不相容性用于检测在染色体位点发生了双重重组事件的克隆。 lktC中的插入不影响下游基因的表达,并且突变株分泌了既不具有白细胞毒性也不具有溶血性的抗原性白细胞毒素。 lktC基因在反式中的表达恢复了野生型表型,这证实了LktC是激活原白毒素激活为成熟白细胞毒素所必需的。 lktC :: cat操纵子融合体的构建使我们能够定量溶血毕赤酵母中的白细胞毒素启动子活性,并证明转录在对数生长期早期最大,但在进入对数后期较后减少。这种等位基因交换系统应该对溶血性毕赤酵母的未来遗传学研究有用,并有可能应用于遗传操作受到限制的嗜血杆菌-放线杆菌-巴斯德氏菌家族的其他成员。

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