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Wiley InterScience | |||||||||||||
![]() Molecular MicrobiologyVolume 59 Issue 4, Pages 1083 - 1096 Published Online: 12 Dec 2005 Journal compilation © 2010 Blackwell Publishing
Abstract | References | Full Text: HTML, PDF (Size: 1448K) | Related Articles | Citation Tracking The Pseudomonas aeruginosa type IV pilin receptor binding domain functions as an adhesin for both biotic and abiotic surfaces Copyright © 2005 The Authors; Journal compilation © 2005 Blackwell Publishing Ltd ABSTRACT
Pseudomonas aeruginosa readily binds to stainless steel and other abiotic surfaces, causing major problems in both the medical and food industries. In this study, we show that P. aeruginosa binds to abiotic surfaces in a concentration-dependent, saturable manner during the initial stages of biofilm formation. P. aeruginosa type IV pili mediate binding to stainless steel as a pilus-deficient strain does not bind to steel, purified type IV pili bound in a concentration-dependent, saturable manner, and purified pili competitively inhibited whole cell binding. PAK pili can also bind polystyrene and polyvinylchloride in a concentration-dependant and saturable manner. As an antibody specific for the C-terminal pilin receptor binding domain inhibited adherence to abiotic surfaces, the role of the C-terminal receptor binding domain in mediating binding to steel surfaces was examined. A synthetic peptide of the PAK pilin epithelial cell receptor binding domain [PAK(128–144)ox] bound directly to steel with high affinity. The interaction of pili with steel was specifically inhibited by this peptide with an apparent K Accepted 14 November, 2005. |
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