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表达侧生鞭毛的细菌有助于剖析鞭毛在致病过程中的多种功能作用。

Bacteria that express lateral flagella enable dissection of the multifunctional roles of flagella in pathogenesis.

作者信息

Kirov Sylvia M

机构信息

Discipline of Pathology, University of Tasmania Clinical School, 43 Collins St, 7000, Hobart, Tasmania, Australia.

出版信息

FEMS Microbiol Lett. 2003 Jul 29;224(2):151-9. doi: 10.1016/S0378-1097(03)00445-2.

Abstract

Flagella are much more than organelles of locomotion and have multiple roles that contribute to pathogenesis. Bacteria, such as Vibrio parahaemolyticus and Aeromonas spp., that possess two distinct flagellar systems (a polar flagellum for swimming in liquid and lateral flagella for swarming over surfaces) are relatively uncommon and provide ideal models for the independent investigation of the contributions of these different types of motility and other flagellar functions to virulence and how they are controlled. Studies with the above organisms have already increased our understanding of how bacteria sense and colonize surfaces forming biofilms that enable them to survive and persist in hostile environments. These insights are helping to identify possible new targets for novel antimicrobials that will both prevent or disrupt these processes and enhance the effectiveness of existing antibiotics. Aeromonas lateral flagella, in addition to mediating swarming motility, appear to be adhesins in their own right, contribute to microcolony formation and efficient biofilm formation on surfaces, and possibly facilitate host cell invasion. It is, therefore, likely that the ability to express lateral flagella is a significant virulence determinant for the Aeromonas strains able to cause persistent and dysenteric infections in the gastrointestinal tract, but further work is needed to establish this.

摘要

鞭毛远不止是运动细胞器,还具有多种与致病机制相关的作用。像副溶血性弧菌和气单胞菌属等细菌,拥有两种不同的鞭毛系统(一种极鞭用于在液体中游动,侧鞭用于在表面群游),这种情况相对少见,为独立研究不同类型的运动性及其他鞭毛功能对毒力的贡献以及它们如何被调控提供了理想模型。对上述生物体的研究已经增进了我们对细菌如何感知并定殖于形成生物膜的表面从而使其能在恶劣环境中存活和持续存在的理解。这些见解有助于确定新型抗菌药物可能的新靶点,这些药物既能预防或破坏这些过程,又能增强现有抗生素的效力。气单胞菌的侧鞭除了介导群游运动外,本身似乎也是黏附素,有助于微菌落形成以及在表面高效形成生物膜,还可能促进宿主细胞侵袭。因此,对于能够在胃肠道引起持续性和痢疾性感染的气单胞菌菌株而言,表达侧鞭的能力很可能是一个重要的毒力决定因素,但还需要进一步研究来证实这一点。

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