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Plesiomonas shigelloides sipD mutant, generated by an efficient gene transfer system, is less invasive

机译:Plesiomonas shigelloides SiPD突变体由有效的基因转移系统产生的侵入性较少

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摘要

Plesiomonas shigelloides is widely associated with human diarrheal disease. Research on this pathogen has been hampered by the absence of an effective genetic manipulation system. In the present study, an efficient and precise conjugation transfer procedure, mediated by suicide vector pRE112 was used to overcome this limitation. The efficiency of generating double recombinants was average 74.3%, and the conjugation protocol may be applied to other P. shigelloides strains. We also identified that the SipD protein of P. shigelloides G5884 (serotype 045) is 65% similar to the SipD in Salmonella pathogenicity island 1 (SPI-1), which is a key element of the type III secretion system related to Salmonella invasion. A P. shigelloides sipD null mutant was generated via the conjugation system, using the suicide vector pRE112. The isogenic mutant strain lacking sipD showed a 50% reduction in its capacity to invade Caco-2 cells.
机译:Plesiomonas shigelloides与人腹泻疾病广泛相关。 由于没有有效的遗传操作系统,这种病原体的研究受到了阻碍。 在本研究中,使用由自杀载体预12介导的有效和精确的共轭转移程序来克服这种限制。 产生双重重组剂的效率平均为74.3%,并且可以将缀合方案应用于其他P. shigelloides菌株。 我们还确定了P. shigelloides G5884(血清型045)的SiPD蛋白为65%,类似于沙门氏菌致病性岛1(SPI-1)中的SIPD,这是与沙门氏菌侵袭有关的III型分泌系统的关键因素。 使用自杀式PRO112,通过共轭系统产生P. shigleites sipd null突变体。 缺乏SIPD的中源性突变株表明其能力降低了侵入Caco-2细胞的50%。

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