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HERO ID
7158313
Reference Type
Journal Article
Title
A communal bacterial adhesin anchors biofilm and bystander cells to surfaces
Author(s)
Kaiser, SE; Mao, K; Taherbhoy, AM; Yu, S; Olszewski, JL; Duda, DM; Kurinov, I; Deng, A; Fenn, TD; Absalon, C; Van Dellen, K; Watnick, PI; ,
Year
2011
Is Peer Reviewed?
1
Journal
P L o S Pathogens
ISSN:
1553-7366
Language
English
PMID
21901100
DOI
10.1371/journal.ppat.1002210
Abstract
While the exopolysaccharide component of the biofilm matrix has been intensively studied, much less is known about matrix-associated proteins. To better understand the role of these proteins, we undertook a proteomic analysis of the V. cholerae biofilm matrix. Here we show that the two matrix-associated proteins, Bap1 and RbmA, perform distinct roles in the biofilm matrix. RbmA strengthens intercellular attachments. In contrast, Bap1 is concentrated on surfaces where it serves to anchor the biofilm and recruit cells not yet committed to the sessile lifestyle. This is the first example of a biofilm-derived, communally synthesized conditioning film that stabilizes the association of multilayer biofilms with a surface and facilitates recruitment of planktonic bystanders to the substratum. These studies define a novel paradigm for spatial and functional differentiation of proteins in the biofilm matrix and provide evidence for bacterial cooperation in maintenance and expansion of the multilayer biofilm.
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