Kraus-Römer Sebastian, Wielert Isabelle, Rathmann Isabel, Grossbach Jan, Maier Berenike
Institute for Biological Physics, University of Cologne, Cologne, Germany.
Faculty of Mathematics and Natural Sciences, CECAD, University of Cologne, Cologne, Germany.
Front Microbiol. 2022 Feb 25;13:839711. doi: 10.3389/fmicb.2022.839711. eCollection 2022.
Bacterial type 4 pili (T4P) are extracellular polymers that serve both as adhesins and molecular motors. Functionally, they are involved in adhesion, colony formation, twitching motility, and horizontal gene transfer. T4P of the human pathogen have been shown to enhance survivability under treatment with antibiotics or hydrogen peroxide. However, little is known about the effect of external stresses on T4P production and motor properties. Here, we address this question by directly visualizing gonococcal T4P dynamics. We show that in the absence of stress gonococci produce T4P at a remarkably high rate of ∼200 T4P min. T4P retraction succeeds elongation without detectable time delay. Treatment with azithromycin or ceftriaxone reduces the T4P production rate. RNA sequencing results suggest that reduced piliation is caused by combined downregulation of the complexes required for T4P extrusion from the cell envelope and cellular energy depletion. Various other stresses including inhibitors of cell wall synthesis and DNA replication, as well as hydrogen peroxide and lactic acid, inhibit T4P production. Moreover, hydrogen peroxide and acidic pH strongly affect pilus length and motor function. In summary, we show that gonococcal T4P are highly dynamic and diverse external stresses reduce piliation despite the protective effect of T4P against some of these stresses.
细菌IV型菌毛(T4P)是细胞外聚合物,兼具黏附素和分子马达的功能。在功能上,它们参与黏附、菌落形成、颤动运动以及水平基因转移。已证明人类病原体的T4P在抗生素或过氧化氢处理下可提高生存能力。然而,关于外部应激对T4P产生和马达特性的影响知之甚少。在此,我们通过直接观察淋球菌T4P的动态变化来解决这个问题。我们发现,在无应激条件下,淋球菌以约每分钟200根T4P的极高速率产生T4P。T4P的回缩在伸长之后成功发生,且无明显时间延迟。阿奇霉素或头孢曲松治疗会降低T4P的产生速率。RNA测序结果表明,菌毛减少是由于从细胞膜挤出T4P所需复合物的联合下调以及细胞能量消耗所致。包括细胞壁合成抑制剂和DNA复制抑制剂以及过氧化氢和乳酸在内的各种其他应激会抑制T4P的产生。此外,过氧化氢和酸性pH会强烈影响菌毛长度和马达功能。总之,我们表明淋球菌T4P具有高度动态性,尽管T4P对其中一些应激具有保护作用,但多种外部应激仍会减少菌毛形成。