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空肠弯曲菌糖基化岛在细胞电荷、Legionaminic酸生物合成以及鸡的定殖中起重要作用。

Campylobacter jejuni glycosylation island important in cell charge, legionaminic acid biosynthesis, and colonization of chickens.

作者信息

Howard Sarah L, Jagannathan Aparna, Soo Evelyn C, Hui Joseph P M, Aubry Annie J, Ahmed Imran, Karlyshev Andrey, Kelly John F, Jones Michael A, Stevens Mark P, Logan Susan M, Wren Brendan W

机构信息

Department of Infectious and Tropical Diseases, London School of Hygiene and Tropical Medicine, London, United Kingdom.

出版信息

Infect Immun. 2009 Jun;77(6):2544-56. doi: 10.1128/IAI.01425-08. Epub 2009 Mar 23.

Abstract

Previously, we identified five genes (Cj1321 to Cj1326, of which Cj1325 and Cj1326 are a single gene) in the O-linked flagellin glycosylation island that are highly prevalent in Campylobacter jejuni isolates from chickens. We report mutagenesis, functional, and structural data to confirm that this locus, and Cj1324 in particular, has a significant contributory role in the colonization of chickens by C. jejuni. A motile DeltaCj1324 mutant with intact flagella was considerably less hydrophobic and less able to autoagglutinate and form biofilms than the parent strain, 11168H, suggesting that the surface charge of flagella of Cj1324-deficient strains was altered. The physical and functional attributes of the parent were restored upon complementation. Structural analysis of flagellin protein purified from the DeltaCj1324 mutant revealed the absence of two legionaminic acid glycan modifications that were present in the parent strain, 11168H. These glycoform modifications were shown to be prevalent in chicken isolates and confirm that differences in the highly variable flagellin glycosylation locus can relate to the strain source. The discovery of molecular mechanisms influencing the persistence of C. jejuni in poultry aids the rational design of approaches to control this problematic pathogen in the food chain.

摘要

此前,我们在O-连接鞭毛蛋白糖基化岛中鉴定出五个基因(Cj1321至Cj1326,其中Cj1325和Cj1326是单个基因),这些基因在来自鸡的空肠弯曲菌分离株中高度普遍。我们报告了诱变、功能和结构数据,以证实该基因座,特别是Cj1324,在空肠弯曲菌在鸡体内的定殖中具有重要作用。与亲本菌株11168H相比,具有完整鞭毛的运动性DeltaCj1324突变体疏水性显著降低,自凝集和形成生物膜的能力也较弱,这表明缺乏Cj1324的菌株鞭毛表面电荷发生了改变。互补后亲本的物理和功能特性得以恢复。从DeltaCj1324突变体中纯化的鞭毛蛋白的结构分析显示,亲本菌株11168H中存在的两种Legionaminic酸聚糖修饰缺失。这些糖型修饰在鸡分离株中普遍存在,并证实高度可变的鞭毛蛋白糖基化基因座的差异可能与菌株来源有关。影响空肠弯曲菌在家禽中持续存在的分子机制的发现有助于合理设计控制食物链中这种有问题病原体的方法。

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