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首页> 外文期刊>Infection and immunity >Overproduction of DNA Adenine Methyltransferase Alters Motility, Invasion, and the Lipopolysaccharide O-Antigen Composition of Yersinia enterocolitica
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Overproduction of DNA Adenine Methyltransferase Alters Motility, Invasion, and the Lipopolysaccharide O-Antigen Composition of Yersinia enterocolitica

机译:DNA腺嘌呤甲基转移酶的过量生产会改变小肠结肠炎耶尔森氏菌的运动,侵袭和脂多糖O抗原组成。

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摘要

DNA adenine methyltransferase (Dam) not only regulates basic cellular functions but also interferes with the proper expression of virulence factors in various pathogens. We showed previously that for the human pathogen Yersinia enterocolitica, overproduction of Dam results in increased invasion of epithelial cells. Since invasion and motility are coordinately regulated in Y. enterocolitica, we analyzed the motility of a Dam-overproducing (DamOP) strain and found it to be highly motile. In DamOP strains, the operon encoding the master regulator of flagellum biosynthesis, flhDC, is upregulated. We show that the increased invasion is not due to enhanced expression of known and putative Y. enterocolitica invasion and adhesion factors, such as Inv, YadA, Ail, Myf fibrils, Pil, or Flp pili. However, overproduction of Dam no longer results in increased invasion for an inv mutant strain, indicating that Inv is necessary for increased invasion after overproduction of Dam. Since we show that overproduction of Dam results in an increased amount of rough lipopolysaccharide (LPS) molecules lacking O-antigen side chains, this implies that reduced steric hindrance by LPS might contribute to increased invasion by a Y. enterocolitica DamOP strain. Our data add an important new aspect to the various virulence-associated phenotypes influenced by DNA methylation in Y. enterocolitica and indicate that Dam targets regulatory processes modulating the composition and function of the bacterial surface.
机译:DNA腺嘌呤甲基转移酶(Dam)不仅调节基本的细胞功能,而且还会干扰各种病原体中毒力因子的正确表达。先前我们已经表明,对于人类病原体小肠结肠炎耶尔森菌,Dam的过量生产会导致上皮细胞的侵袭增加。由于在 Y中,入侵和运动受到协调调节。肠结肠炎,我们分析了一株过量生产水坝(Dam OP )菌株的运动力,发现它具有很高的运动力。在Dam OP 菌株中,编码鞭毛生物合成主调节子 flhDC 的操纵子被上调。我们表明增加的入侵不是由于已知和推定的 Y表达的增强。肠结肠炎的侵袭和粘附因子,例如Inv,YadA,Ail,Myf原纤维,Pil或Flp菌毛。但是,Dam的过量生产不再导致 inv 突变株入侵的增加,这表明Inv是过量生产Dam以后入侵增加所必需的。由于我们显示出Dam的过量生产导致缺少O抗原侧链的粗糙脂多糖(LPS)分子的数量增加,因此这暗示LPS减少的空间位阻可能会导致 Y入侵的增加。肠结肠炎 Dam OP 菌株。我们的数据为受 Y的DNA甲基化影响的各种与毒力相关的表型增加了重要的新方面。肠球菌,并指出大坝的目标是调控细菌表面组成和功能的调控过程。

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