Department of Microbiology and Molecular Genetics, Michigan State University, East Lansing, Michigan, United States of America.
PLoS Pathog. 2022 May 2;18(5):e1010102. doi: 10.1371/journal.ppat.1010102. eCollection 2022 May.
Vibrio cholerae respires both aerobically and anaerobically and, while oxygen may be available to it during infection, other terminal electron acceptors are proposed for population expansion during infection. Unlike gastrointestinal pathogens that stimulate significant inflammation leading to elevated levels of oxygen or alternative terminal electron acceptors, V. cholerae infections are not understood to induce a notable inflammatory response. To ascertain the respiration requirements of V. cholerae during infection, we used Multiplex Genome Editing by Natural Transformation (MuGENT) to create V. cholerae strains lacking aerobic or anaerobic respiration. V. cholerae strains lacking aerobic respiration were attenuated in infant mice 105-fold relative to wild type, while strains lacking anaerobic respiration had no colonization defect, contrary to earlier work suggesting a role for anaerobic respiration during infection. Using several approaches, including one we developed for this work termed Comparative Multiplex PCR Amplicon Sequencing (CoMPAS), we determined that the bd-I and cbb3 oxidases are essential for small intestinal colonization of V. cholerae in the infant mouse. The bd-I oxidase was also determined as the primary oxidase during growth outside the host, making V. cholerae the only example of a Gram-negative bacterial pathogen in which a bd-type oxidase is the primary oxidase for energy acquisition inside and outside of a host.
霍乱弧菌可以进行需氧呼吸和厌氧呼吸,虽然在感染过程中它可能会接触到氧气,但在感染过程中,还有其他的末端电子受体有助于其种群扩张。与刺激显著炎症导致氧气或其他末端电子受体水平升高的胃肠道病原体不同,霍乱弧菌感染被认为不会引起明显的炎症反应。为了确定霍乱弧菌在感染过程中的呼吸需求,我们使用自然转化的多重基因组编辑(MuGENT)技术创建了缺乏需氧或厌氧呼吸的霍乱弧菌菌株。与野生型相比,缺乏需氧呼吸的霍乱弧菌菌株在婴儿小鼠中的衰减倍数为 105 倍,而缺乏厌氧呼吸的菌株在定植缺陷方面没有缺陷,这与早期工作表明厌氧呼吸在感染过程中起作用的观点相反。我们使用了几种方法,包括我们为这项工作开发的一种方法,称为比较多重 PCR 扩增子测序(CoMPAS),确定了 bd-I 和 cbb3 氧化酶对霍乱弧菌在婴儿小鼠小肠中的定植是必需的。bd-I 氧化酶也被确定为宿主外生长的主要氧化酶,这使得霍乱弧菌成为唯一的革兰氏阴性细菌病原体,其 bd 型氧化酶是在宿主内外获取能量的主要氧化酶。