Mertins Sonja, Allan Brenda J, Townsend Hugh G, Köster Wolfgang, Potter Andrew A
Vaccine and Infectious Disease Organization-International Vaccine Centre, University of Saskatchewan, 120 Veterinary Road, Saskatoon, Saskatchewan, Canada S7N 5E3.
Avian Dis. 2013 Mar;57(1):116-22. doi: 10.1637/10235-050412-ResNote.1.
Campylobacter jejuni, a gram-negative motile bacterium commonly found in the chicken gastrointestinal tract, is one of the leading causes of bacterial gastroenteritis in humans worldwide. An intact and functional flagellum is important for C. jejuni virulence and colonization. To understand the role of C. jejuni motility in adherence and internalization in polarized Caco-2 cells and in cecal colonization of chickens we constructed a C. jejuni NCTC11168 V1 deltamotAB mutant. The motAB genes code for the flagellar motor, which enables the rotation of the flagellum. The nonmotile deltamotAB mutant expressed a full-length flagellum, which allowed us to differentiate between the roles of full-length flagella and motility in the ability of C. jejuni to colonize. To study the adherence and invasion abilities of the C. jejuni deltamotAB mutant we chose to use polarized Caco-2 cells, which are thought to be more representative of in vivo intestinal cell architecture and function. Although the C. jejuni deltamotAB mutant adhered significantly better than the wild type to the Caco-2 cells, we observed a significant reduction in the ability to invade the cells. In this study we obtained evidence that the flagellar rotation triggers C. jejuni invasion into polarized Caco-2 cells and we believe that C. jejuni is propelled into the cell with a drill-like rotation. The deltamotAB mutant was also tested for its colonization potential in a 1-day-old chicken model. The nonmotile C. jejuni deltamotAB mutant was not able to colonize any birds at days 3 and 7, suggesting that motility is essential for C. jejuni colonization.
空肠弯曲菌是一种革兰氏阴性、具运动性的细菌,常见于鸡的胃肠道,是全球人类细菌性肠胃炎的主要病因之一。完整且功能正常的鞭毛对空肠弯曲菌的毒力和定植至关重要。为了解空肠弯曲菌的运动性在极化的Caco-2细胞黏附与内化以及鸡盲肠定植中的作用,我们构建了空肠弯曲菌NCTC11168 V1 deltamotAB突变体。motAB基因编码鞭毛马达,使鞭毛能够旋转。无运动性的deltamotAB突变体表达全长鞭毛,这使我们能够区分全长鞭毛和运动性在空肠弯曲菌定植能力中的作用。为研究空肠弯曲菌deltamotAB突变体的黏附与侵袭能力,我们选择使用极化的Caco-2细胞,其被认为更能代表体内肠道细胞结构和功能。尽管空肠弯曲菌deltamotAB突变体比野生型对Caco-2细胞的黏附明显更好,但我们观察到其侵袭细胞的能力显著降低。在本研究中,我们获得证据表明鞭毛旋转触发空肠弯曲菌侵袭极化的Caco-2细胞,并且我们认为空肠弯曲菌以类似钻孔的旋转方式被推进细胞。还在1日龄鸡模型中测试了deltamotAB突变体的定植潜力。无运动性的空肠弯曲菌deltamotAB突变体在第3天和第7天无法在任何鸡中定植,表明运动性对空肠弯曲菌的定植至关重要。