生物膜
细胞
细菌细胞结构
铜绿假单胞菌
微生物学
细胞膜
细胞壁
细胞外基质
细菌
细胞生物学
细菌粘附素
细胞质
细胞外
细菌外膜
生物物理学
多细胞生物
化学
生物
生物化学
毒力
大肠杆菌
基因
遗传学
作者
Charlotte E. Melia,Jani Reddy Bolla,Stefan Katharios-Lanwermeyer,Daniel B. Mihaylov,Patrick C. Hoffmann,Jiandong Huo,Michael R. Wozny,Louis M. Elfari,Jan Böhning,Ashleigh N. Morgan,Charlie J. Hitchman,Raymond J. Owens,Carol V. Robinson,George A. O'Toole,Tanmay A.M. Bharat
标识
DOI:10.1073/pnas.2109940118
摘要
Many bacteria, including the major human pathogen Pseudomonas aeruginosa, are naturally found in multicellular, antibiotic-tolerant biofilm communities, in which cells are embedded in an extracellular matrix of polymeric molecules. Cell-cell interactions within P. aeruginosa biofilms are mediated by CdrA, a large, membrane-associated adhesin present in the extracellular matrix of biofilms, regulated by the cytoplasmic concentration of cyclic diguanylate. Here, using electron cryotomography of focused ion beam-milled specimens, we report the architecture of CdrA molecules in the extracellular matrix of P. aeruginosa biofilms at intact cell-cell junctions. Combining our in situ observations at cell-cell junctions with biochemistry, native mass spectrometry, and cellular imaging, we demonstrate that CdrA forms an extended structure that projects from the outer membrane to tether cells together via polysaccharide binding partners. We go on to show the functional importance of CdrA using custom single-domain antibody (nanobody) binders. Nanobodies targeting the tip of functional cell-surface CdrA molecules could be used to inhibit bacterial biofilm formation or disrupt preexisting biofilms in conjunction with bactericidal antibiotics. These results reveal a functional mechanism for cell-cell interactions within bacterial biofilms and highlight the promise of using inhibitors targeting biofilm cell-cell junctions to prevent or treat problematic, chronic bacterial infections.
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