首页> 外文OA文献 >Comparative ultrastructural and functional studies of Helicobacter pylori and Helicobacter mustelae flagellin mutants: both flagellin subunits, FlaA and FlaB, are necessary for full motility in Helicobacter species.
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Comparative ultrastructural and functional studies of Helicobacter pylori and Helicobacter mustelae flagellin mutants: both flagellin subunits, FlaA and FlaB, are necessary for full motility in Helicobacter species.

机译:比较幽门螺杆菌和幽门螺杆菌鞭毛蛋白突变体的超微结构和功能研究:鞭毛蛋白亚基,FlaA和FlaB,都是在幽门螺杆菌中充分运动所必需的。

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摘要

Helicobacter mustelae causes chronic gastritis and ulcer disease in ferrets. It is therefore considered an important animal model of human Helicobacter pylori infection. High motility even in a viscous environment is one of the common virulence determinants of Helicobacter species. Their sheathed flagella contain a complex filament that is composed of two distinctly different flagellin subunits, FlaA and FlaB, that are coexpressed in different amounts. Here, we report the cloning and sequence determination of the flaA gene of H. mustelae NCTC12032 from a PCR amplification product. The FlaA protein has a calculated molecular mass of 53 kDa and is 73% homologous to the H. pylori FlaA subunit. Isogenic flaA and flaB mutants of H. mustelae F1 were constructed by means of reverse genetics. A method was established to generate double mutants (flaA flaB) of H. mustelae F1 as well as H. pylori N6. Genotypes, motility properties, and morphologies of the H. mustelae flagellin mutants were determined and compared with those of the H. pylori flaA and flaB mutants described previously. The flagellar organizations of the two Helicobacter species proved to be highly similar. When the flaB genes were disrupted, motility decreased by 30 to 40%. flaA mutants retained weak motility by comparison with strains that were devoid of both flagellin subunits. Weakly positive motility tests of the flaA mutants correlated with the existence of short truncated flagella. In H. mustelae, lateral as well as polar flagella were present in the truncated form. flaA flaB double mutants were completely nonmotile and lacked any form of flagella. These results show that the presence of both flagellin subunits is necessary for complete motility of Helicobacter species. The importance of this flagellar organization for the ability of the bacteria to colonize the gastric mucosa and to persist in the gastric mucus remains to be proven.
机译:幽门螺杆菌在雪貂中引起慢性胃炎和溃疡病。因此,它被认为是人幽门螺杆菌感染的重要动物模型。即使在粘性环境中也具有很高的运动能力,这是幽门螺杆菌常见的致病力决定因素之一。它们的鞘鞭毛包含复杂的细丝,该细丝由两个明显不同的鞭毛蛋白亚基FlaA和FlaB共同表达,并以不同的量表达。在这里,我们报道了从PCR扩增产物中分离出的H. mustelae NCTC12032 flaA基因的克隆和序列测定。 FlaA蛋白的计算分子量为53 kDa,与幽门螺杆菌FlaA亚基同源性为73%。通过反向遗传学构建了芥菜F1的等基因flaA和flaB突变体。建立了一种方法,以产生穆斯特氏菌F1和幽门螺杆菌N6的双突变体(flaA flaB)。确定了H. mustelae鞭毛蛋白突变体的基因型,运动特性和形态,并将其与幽门螺杆菌flaA和flaB突变体的基因型,运动特性和形态进行了比较。这两种幽门螺杆菌的鞭毛组织被证明是高度相似的。当flaB基因被破坏时,运动能力降低了30%至40%。与没有两个鞭毛蛋白亚基的菌株相比,flaA突变体保留了较弱的运动能力。 flaA突变体的弱阳性运动试验与短截短鞭毛的存在有关。在芥菜中,侧生和极生鞭毛均以截短形式存在。 flaA flaB双突变体完全不活动,并且缺乏任何鞭毛形式。这些结果表明,两个鞭毛蛋白亚基的存在对于完全的螺旋菌运动是必需的。这种鞭毛组织对于细菌在胃粘膜中定植并在胃粘液中持久存在的能力的重要性仍有待证明。

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