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Kanamycin Resistance Cassette for Genetic Manipulation of Treponema denticola

机译:卡那霉素抗性盒用于密螺旋体的遗传操作

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Treponema denticola has been recognized as an important oral pathogen of the “red complex” bacterial consortium that is associated with the pathogenesis of endodontal and periodontal diseases. However, little is known about the virulence of T. denticola due to its recalcitrant genetic system. The difficulty in genetically manipulating oral spirochetes is partially due to the lack of antibiotic resistance cassettes that are useful for gene complementation following allelic replacement mutagenesis. In this study, a kanamycin resistance cassette was identified and developed for the genetic manipulation of T. denticola ATCC 35405. Compared to the widely used ermF-ermAM cassette, the kanamycin cassette used in the transformation experiments gave rise to additional antibiotic-resistant T. denticola colonies. The kanamycin cassette is effective for allelic replacement mutagenesis as demonstrated by inactivation of two open reading frames of T. denticola , TDE1430 and TDE0911. In addition, the cassette is also functional in trans -chromosomal complementation. This was determined by functional rescue of a periplasmic flagellum (PF)-deficient mutant that had the flgE gene coding for PF hook protein inactivated. The integration of the full-length flgE gene into the genome of the flgE mutant rescued all of the defects associated with the flgE mutant that included the lack of PF filament and spirochetal motility. Taken together, we demonstrate that the kanamycin resistance gene is a suitable cassette for the genetic manipulation of T. denticola that will facilitate the characterization of virulence factors attributed to this important oral pathogen.
机译:密螺旋体已被认为是“红色复合物”细菌联合体的重要口腔病原体,与口腔和牙周疾病的发病机理有关。但是,由于其顽固的遗传系统,人们对锥虫的毒力知之甚少。基因操作口服螺旋体的困难部分是由于缺乏等位基因置换诱变后可用于基因互补的抗生素抗性盒。在这项研究中,鉴定并开发了一种卡那霉素抗性盒,用于遗传修饰的锥虫ATCC35405。与广泛使用的ermF-ermAM卡盒相比,用于转化实验的卡那霉素盒产生了另外的抗生素抗性T。树突菌落。卡那霉素盒对于等位基因置换诱变是有效的,如通过灭活T. denticola,TDE1430和TDE0911的两个开放阅读框所证明的。另外,该盒在反染色体互补中也起作用。这是通过功能性挽救周质鞭毛(PF)缺陷型突变体而确定的,该突变体已使编码PF钩蛋白的flgE基因失活。将全长flgE基因整合到flgE突变体的基因组中,挽救了与flgE突变体相关的所有缺陷,包括缺乏PF细丝和螺旋运动。综上所述,我们证明卡那霉素抗性基因是用于T. denticola遗传操作的合适盒式磁带,这将有助于表征归因于这种重要口腔病原体的毒力因子。

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