Role of Cyclic Di-GMP and Exopolysaccharide in Type IV Pilus Dynamics

被引:27
|
作者
Ribbe, Jan [1 ]
Baker, Amy E. [2 ]
Euler, Sebastian [1 ]
O'Toole, George A. [2 ]
Maier, Berenike [1 ]
机构
[1] Univ Cologne, Dept Phys, Cologne, Germany
[2] Geisel Sch Med Dartmouth, Hanover, NH USA
基金
美国国家卫生研究院;
关键词
Pseudomonas aeruginosa; pili; biofilm; cyclic di-GMP; exopolysaccharide; molecular motor; PSEUDOMONAS-AERUGINOSA; NEISSERIA-GONORRHOEAE; NONOPSONIC PHAGOCYTOSIS; SWARMING MOTILITY; BIOFILM FORMATION; RETRACTION; ATTACHMENT; GENES; IDENTIFICATION; SURFACES;
D O I
10.1128/JB.00859-16
中图分类号
Q93 [微生物学];
学科分类号
071005 ; 100705 ;
摘要
For Pseudomonas aeruginosa, levels of cyclic di-GMP (c-di-GMP) govern the transition from the planktonic state to biofilm formation. Type IV pili (T4P) are crucial determinants of biofilm structure and dynamics, but it is unknown how levels of c-di-GMP affect pilus dynamics. Here, we scrutinized how c-di-GMP affects molecular motor properties and adhesive behavior of T4P. By means of retraction, T4P generated forces of similar to 30 pN. Deletion mutants in the proteins with known roles in biofilm formation, swarming motility, and exopolysaccharide (EPS) production (specifically, the diguanylate cyclases sadC and roeA or the c-di-GMP phosphodiesterase bifA) showed only modest effects on velocity or force of T4P retraction. At high levels of c-di-GMP, the production of exopolysaccharides, particularly of Pel, is upregu-lated. We found that Pel production strongly enhances T4P-mediated surface adhesion of P. aeruginosa, suggesting that T4P-matrix interactions may be involved in biofilm formation by P. aeruginosa. Finally, our data support the previously proposed model of slingshot-like "twitching" motility of P. aeruginosa. IMPORTANCE Type IV pili (T4P) play various important roles in the transition of bacteria from the planktonic state to the biofilm state, including surface attachment and surface sensing. Here, we investigate adhesion, dynamics, and force generation of T4P after bacteria engage a surface. Our studies showed that two critical components of biofilm formation by Pseudomonas aeruginosa, T4P and exopolysaccharides, contribute to enhanced T4P-mediated force generation by attached bacteria. These data indicate a crucial role for the coordinated impact of multiple biofilm-promoting factors during the early stages of attachment to a surface. Our data are also consistent with a previous model explaining why pilus-mediated motility in P. aeruginosa results in characteristic "twitching" behavior.
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页数:10
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