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VF category: Adhesive pili of the chaperone-usher family (total 415 related VFs in database, current show from 21 to 30)
 
VF Bacteria Brief description
Type I pili
Aeromonas
(A. veronii B565)
Short-rigid pili. Chaperone-usher pathway assembled pili. Involved in the initial stages of colonisation. ...
Fimbriae
Bordetella
(B. bronchiseptica RB50)
The major subunits form the two predominant Bordetella fimbrial serotypes: Fim2 and Fim3. fimX is expressed only at very low levels. fimN, the fourth fimbrial locus is identified in B. bronchiseptica. The fim genes are subject to fimbrial phase variation by a mechanism involved in slipped-stand mispairing within a stretch of cytosine residues located between the -10 and -35 elements of the fim2, fim3, fimX and fimN promoters. FimD is the minor fimbrial subunit for all fimbrial serotypes. It forms the tip adhesin. ...
Fimbriae
Bordetella
(B. avium 197N)
The major subunits form the two predominant Bordetella fimbrial serotypes: Fim2 and Fim3. fimX is expressed only at very low levels. fimN, the fourth fimbrial locus is identified in B. bronchiseptica. The fim genes are subject to fimbrial phase variation by a mechanism involved in slipped-stand mispairing within a stretch of cytosine residues located between the -10 and -35 elements of the fim2, fim3, fimX and fimN promoters. FimD is the minor fimbrial subunit for all fimbrial serotypes. It forms the tip adhesin. ...
Fimbriae
Bordetella
(B. parapertussis 12822)
The major subunits form the two predominant Bordetella fimbrial serotypes: Fim2 and Fim3. fimX is expressed only at very low levels. fimN, the fourth fimbrial locus is identified in B. bronchiseptica. The fim genes are subject to fimbrial phase variation by a mechanism involved in slipped-stand mispairing within a stretch of cytosine residues located between the -10 and -35 elements of the fim2, fim3, fimX and fimN promoters. FimD is the minor fimbrial subunit for all fimbrial serotypes. It forms the tip adhesin. ...
AAFs
(Aggregative adherence fimbriae)
Escherichia
(E. coli 17-2)
Belongs to Dr family of adhesins. At least four allelic variants of AAFs exist, but each is present in only a minority of strains. Most EAEC strains harbor a 60 to 65-MDa plasmid that may encode the AAF/I or AAF/II and , in some cases, the enterotoxin EAST1 and Pet. ...
AAFs
(Aggregative adherence fimbriae)
Escherichia
(E. coli str. 042)
Belongs to Dr family of adhesins. At least four allelic variants of AAFs exist, but each is present in only a minority of strains. Most EAEC strains harbor a 60 to 65-MDa plasmid that may encode the AAF/I or AAF/II and , in some cases, the enterotoxin EAST1 and Pet. ...
AAFs
(Aggregative adherence fimbriae)
Escherichia
(E. coli 55989)
Belongs to Dr family of adhesins. At least four allelic variants of AAFs exist, but each is present in only a minority of strains. Most EAEC strains harbor a 60 to 65-MDa plasmid that may encode the AAF/I or AAF/II and , in some cases, the enterotoxin EAST1 and Pet. ...
AAFs
(Aggregative adherence fimbriae)
Escherichia
(E. coli O104:H4 str. 2009EL-2050)
Belongs to Dr family of adhesins. At least four allelic variants of AAFs exist, but each is present in only a minority of strains. Most EAEC strains harbor a 60 to 65-MDa plasmid that may encode the AAF/I or AAF/II and , in some cases, the enterotoxin EAST1 and Pet. ...
AAFs
(Aggregative adherence fimbriae)
Escherichia
(E. coli O104:H4 str. 2009EL-2071)
Belongs to Dr family of adhesins. At least four allelic variants of AAFs exist, but each is present in only a minority of strains. Most EAEC strains harbor a 60 to 65-MDa plasmid that may encode the AAF/I or AAF/II and , in some cases, the enterotoxin EAST1 and Pet. ...
AAFs
(Aggregative adherence fimbriae)
Escherichia
(E. coli O104:H4 str. 2011C-3493)
Belongs to Dr family of adhesins. At least four allelic variants of AAFs exist, but each is present in only a minority of strains. Most EAEC strains harbor a 60 to 65-MDa plasmid that may encode the AAF/I or AAF/II and , in some cases, the enterotoxin EAST1 and Pet. ...
   


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