首页> 美国卫生研究院文献>Journal of Bacteriology >Type IV Pilus Genes pilA and pilC of Pseudomonas stutzeri Are Required for Natural Genetic Transformation and pilA Can Be Replaced by Corresponding Genes from Nontransformable Species
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Type IV Pilus Genes pilA and pilC of Pseudomonas stutzeri Are Required for Natural Genetic Transformation and pilA Can Be Replaced by Corresponding Genes from Nontransformable Species

机译:自然遗传转化需要斯图氏假单胞菌的IV型毛发基因pilA和pilC并且pilA可以被非转化物种的相应基因替代

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摘要

Pseudomonas stutzeri lives in terrestrial and aquatic habitats and is capable of natural genetic transformation. After transposon mutagenesis, transformation-deficient mutants were isolated from a P. stutzeri JM300 strain. In one of them a gene which coded for a protein with 75% amino acid sequence identity to PilC of Pseudomonas aeruginosa, an accessory protein for type IV pilus biogenesis, was inactivated. The presence of type IV pili was demonstrated by susceptibility to the type IV pilus-dependent phage PO4, by occurrence of twitching motility, and by electron microscopy. The pilC mutant had no pili and was defective in twitching motility. Further sequencing revealed that pilC is clustered in an operon with genes homologous to pilB and pilD of P. aeruginosa, which are also involved in pilus formation. Next to these genes but transcribed in the opposite orientation a pilA gene encoding a protein with high amino acid sequence identity to pilin, the structural component of type IV pili, was identified. Insertional inactivation of pilA abolished pilus formation, PO4 plating, twitching motility, and natural transformation. The amounts of 3H-labeled P. stutzeri DNA that were bound to competent parental cells and taken up were strongly reduced in the pilC and pilA mutants. Remarkably, the cloned pilA genes from nontransformable organisms like Dichelobacter nodosus and the PAK and PAO strains of P. aeruginosa fully restored pilus formation and transformability of the P. stutzeri pilA mutant (along with PO4 plating and twitching motility). It is concluded that the type IV pili of the soil bacterium P. stutzeri function in DNA uptake for transformation and that their role in this process is not confined to the species-specific pilin.
机译:斯氏假单胞菌(Pseudomonas stutzeri)生活在陆地和水生生境中,并且能够进行自然遗传转化。转座子诱变后,从斯图氏假单胞菌JM300菌株中分离出转化缺陷型突变体。在其中一个中,编码与铜绿假单胞菌的PilC具有75%氨基酸序列同一性的蛋白质的基因被灭活,铜绿假单胞菌是IV型菌毛生物发生的辅助蛋白质。 IV型菌毛的存在通过对IV型菌毛依赖性噬菌体PO4的易感性,发生抽动运动和电子显微镜证明。 pilC突变体没有菌毛,并且抽搐运动力存在缺陷。进一步的测序表明,pilC聚集在一个操纵子中,该操纵子具有与铜绿假单胞菌的pilB和pilD同源的基因,它们也参与菌毛的形成。在这些基因旁边但转录方向相反,鉴定出了编码与pilin(IV型菌毛的结构成分)具有高度氨基酸序列同一性的蛋白质的pilA基因。 pilA的插入失活消除了菌毛的形成,PO4电镀,抽搐运动和自然转化。在pilC和pilA突变体中, 3 H标记的斯图氏假单胞菌DNA与感受态亲本细胞结合并被摄取的数量大大减少。值得注意的是,从不可转化的生物(如结节双歧杆菌)和铜绿假单胞菌的PAK和PAO菌株克隆的pilA基因完全恢复了 P的菌毛形成和可转化性。 stutzeri pilA 突变体(以及PO4镀层和抽搐性)。结论是土壤细菌 P的IV型菌毛。 stutzeri 在DNA摄取转化中的功能,并且它们在此过程中的作用并不局限于特定物种的菌毛蛋白。

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