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PMID: 16930149 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't

The affinity of the FimH fimbrial adhesin is receptor-driven and quasi-independent of Escherichia coli pathotypes.

Molecular microbiology ·Vol. 61 ·No. 6 ·2006-09-00 ·Pages 1556-68

Bouckaert J, Mackenzie J, de Paz JL, Chipwaza B, Choudhury D, Zavialov A, Mannerstedt K, Anderson J, Piérard D, Wyns L, Seeberger PH, Oscarson S, De Greve H, Knight SD

Abstract

Type-1 fimbriae are important virulence factors for the establishment of Escherichia coli urinary tract infections. Bacterial adhesion to the high-mannosylated uroplakin Ia glycoprotein receptors of bladder epithelium is mediated by the FimH adhesin. Previous studies have attributed differences in mannose-sensitive adhesion phenotypes between faecal and uropathogenic E. coli to sequence variation in the FimH receptor-binding domain. We find that FimH variants from uropathogenic, faecal and enterohaemorrhagic isolates express the same specificities and affinities for high-mannose structures. The only exceptions are FimHs from O157 strains that carry a mutation (Asn135Lys) in the mannose-binding pocket that abolishes all binding. A high-mannose microarray shows that all substructures are bound by FimH and that the largest oligomannose is not necessarily the best binder. Affinity measurements demonstrate a strong preference towards oligomannosides exposing Manalpha1-3Man at their non-reducing end. Binding is further enhanced by the beta1-4-linkage to GlcNAc, where binding is 100-fold better than that of alpha-d-mannose. Manalpha1-3Manbeta1-4GlcNAc, a major oligosaccharide present in the urine of alpha-mannosidosis patients, thus constitutes a well-defined FimH epitope. Differences in affinities for high-mannose structures are at least 10-fold larger than differences in numbers of adherent bacteria between faecal and uropathogenic strains. Our results imply that the carbohydrate expression profile of targeted host tissues and of natural inhibitors in urine, such as Tamm-Horsfall protein, are stronger determinants of adhesion than FimH variation.

MeSH Terms
Adhesins, Escherichia coli/chemistry,genetics,metabolism Amino Acid Sequence Bacterial Adhesion Carbohydrate Sequence Escherichia coli/metabolism,pathogenicity Fimbriae Proteins/chemistry,genetics,metabolism Fimbriae, Bacterial/chemistry,metabolism Hemagglutination Mannose/chemistry,metabolism Mannosides/chemistry,metabolism Microarray Analysis Molecular Sequence Data Mutation Protein Conformation
Chemicals
Adhesins, Escherichia coli Mannosides fimH protein, E coli Fimbriae Proteins Mannose
Authors & Affiliations
14 authors, click to expand affiliations / ORCID
Bouckaert Julie
Department of Ultrastructure, Vrije Universiteit Brussel, Flanders Interuniversity Institute for Biotechnology (VIB), Pleinlaan 2, 1050 Brussels, Belgium.
Mackenzie Jenny
de Paz José L
Chipwaza Beatrice
Choudhury Devapriya
Zavialov Anton
Mannerstedt Karin
Anderson Jennifer
Piérard Denis
Wyns Lode
Seeberger Peter H
Oscarson Stefan
De Greve Henri
Knight Stefan D
References (52)
52 references, click to expand
  1. The role of horizontal gene transfer in the spread of trimethoprim-sulfamethoxazole resistance among uropathogenic Escherichia coli in Europe and Canada.
    J Antimicrob Chemother. 2006 Apr;57(4):666-72 PMID: 16464890
  2. Carbohydrates as future anti-adhesion drugs for infectious diseases.
    Biochim Biophys Acta. 2006 Apr;1760(4):527-37 PMID: 16564136
  3. Distinct glycan structures of uroplakins Ia and Ib: structural basis for the selective binding of FimH adhesin to uroplakin Ia.
    J Biol Chem. 2006 May 26;281(21):14644-53 PMID: 16567801
  4. Protein glycosylation and diseases: blood and urinary oligosaccharides as markers for diagnosis and therapeutic monitoring.
    Clin Chem. 2000 Jun;46(6 Pt 1):795-805 PMID: 10839767
  5. Expression and purification of the mannose recognition domain of the FimH adhesin.
    FEMS Microbiol Lett. 2000 Jul 15;188(2):147-51 PMID: 10913698
  6. Tamm-Horsfall protein binds to type 1 fimbriated Escherichia coli and prevents E. coli from binding to uroplakin Ia and Ib receptors.
    J Biol Chem. 2001 Mar 30;276(13):9924-30 PMID: 11134021
  7. Two cases of non-O157:H7 Escherichia coli hemolytic uremic syndrome caused by urinary tract infection.
    Am J Kidney Dis. 2001 Oct;38(4):E22 PMID: 11576909
  8. Uroplakin Ia is the urothelial receptor for uropathogenic Escherichia coli: evidence from in vitro FimH binding.
    J Cell Sci. 2001 Nov;114(Pt 22):4095-103 PMID: 11739641
  9. Structural basis of tropism of Escherichia coli to the bladder during urinary tract infection.
    Mol Microbiol. 2002 May;44(4):903-15 PMID: 12010488
  10. Adhesion and entry of uropathogenic Escherichia coli.
    Cell Microbiol. 2002 May;4(5):257-71 PMID: 12027955
  11. Bacterial adhesion to target cells enhanced by shear force.
    Cell. 2002 Jun 28;109(7):913-23 PMID: 12110187
  12. Adherence of type 1-fimbriated Escherichia coli to uroepithelial cells: more in diabetic women than in control subjects.
    Diabetes Care. 2002 Aug;25(8):1405-9 PMID: 12145242
  13. Sequence analysis demonstrates the conservation of fimH and variability of fimA throughout avian pathogenic Escherichia coli (APEC).
    Vet Res. 2003 Mar-Apr;34(2):153-63 PMID: 12657207
  14. Chaperone-subunit-usher interactions required for donor strand exchange during bacterial pilus assembly.
    J Bacteriol. 2003 May;185(9):2723-30 PMID: 12700251
  15. Structure and biogenesis of the capsular F1 antigen from Yersinia pestis: preserved folding energy drives fiber formation.
    Cell. 2003 May 30;113(5):587-96 PMID: 12787500
  16. Pathogenesis and management of bacterial urinary tract infections in adult patients with diabetes mellitus.
    Int J Antimicrob Agents. 2003 Oct;22 Suppl 2:35-43 PMID: 14527769
  17. Variation of high mannose chains of Tamm-Horsfall glycoprotein confers differential binding to type 1-fimbriated Escherichia coli.
    J Biol Chem. 2004 Jan 2;279(1):216-22 PMID: 14570881
  18. Structural basis for bacterial adhesion in the urinary tract.
    Adv Exp Med Biol. 2003;535:33-52 PMID: 14714887
  19. Differentiation and developmental pathways of uropathogenic Escherichia coli in urinary tract pathogenesis.
    Proc Natl Acad Sci U S A. 2004 Feb 3;101(5):1333-8 PMID: 14739341
  20. Tamm-Horsfall protein knockout mice are more prone to urinary tract infection: rapid communication.
    Kidney Int. 2004 Mar;65(3):791-7 PMID: 14871399
  21. Probing protein-carbohydrate interactions with microarrays of synthetic oligosaccharides.
    Chembiochem. 2004 Mar 5;5(3):379-82 PMID: 14997532
  22. Ablation of the Tamm-Horsfall protein gene increases susceptibility of mice to bladder colonization by type 1-fimbriated Escherichia coli.
    Am J Physiol Renal Physiol. 2004 Apr;286(4):F795-802 PMID: 14665435
  23. Oligosaccharide and glycoprotein microarrays as tools in HIV glycobiology; glycan-dependent gp120/protein interactions.
    Chem Biol. 2004 Jun;11(6):875-81 PMID: 15217620
  24. A mannose-containing trisaccharide isolated from urines of three patients with mannosidosis.
    J Biol Chem. 1973 Sep 10;248(17):6210-5 PMID: 4806349
  25. Prevention of colonization of the urinary tract of mice with Escherichia coli by blocking of bacterial adherence with methyl alpha-D-mannopyranoside.
    J Infect Dis. 1979 Mar;139(3):329-32 PMID: 376757
  26. Interaction of mannose-containing oligosaccharides with the fimbrial lectin of Escherichia coli.
    Biochem Biophys Res Commun. 1982 Apr 29;105(4):1426-32 PMID: 6125146
  27. Carbohydrate specificity of the surface lectins of Escherichia coli, Klebsiella pneumoniae, and Salmonella typhimurium.
    Carbohydr Res. 1983 Aug 16;120:235-49 PMID: 6138149
  28. Carbohydrate-binding sites of the mannose-specific fimbrial lectins of enterobacteria.
    Infect Immun. 1984 Mar;43(3):1088-90 PMID: 6142000
  29. The genetic determinant of adhesive function in type 1 fimbriae of Escherichia coli is distinct from the gene encoding the fimbrial subunit.
    J Bacteriol. 1986 Mar;165(3):1033-6 PMID: 2419305
  30. Oligomannoside-type glycopeptides inhibiting adhesion of Escherichia coli strains mediated by type 1 pili: preparation of potent inhibitors from plant glycoproteins.
    Infect Immun. 1986 May;52(2):428-36 PMID: 2870987
  31. New type of adhesive specificity revealed by oligosaccharide probes in Escherichia coli from patients with urinary tract infection.
    Lancet. 1988 Dec 10;2(8624):1327-30 PMID: 2904051
  32. Conservation of the D-mannose-adhesion protein among type 1 fimbriated members of the family Enterobacteriaceae.
    Nature. 1988 Dec 15;336(6200):682-4 PMID: 2904657
  33. Type 1 pili are not necessary for colonization of the streptomycin-treated mouse large intestine by type 1-piliated Escherichia coli F-18 and E. coli K-12.
    Infect Immun. 1989 Oct;57(10):3022-9 PMID: 2570752
  34. Improved methods for building protein models in electron density maps and the location of errors in these models.
    Acta Crystallogr A. 1991 Mar 1;47 ( Pt 2):110-9 PMID: 2025413
  35. FimH family of type 1 fimbrial adhesins: functional heterogeneity due to minor sequence variations among fimH genes.
    J Bacteriol. 1994 Feb;176(3):748-55 PMID: 7905476
  36. Type 1 fimbrial shafts of Escherichia coli and Klebsiella pneumoniae influence sugar-binding specificities of their FimH adhesins.
    Infect Immun. 1994 Mar;62(3):843-8 PMID: 7906676
  37. Quantitative differences in adhesiveness of type 1 fimbriated Escherichia coli due to structural differences in fimH genes.
    J Bacteriol. 1995 Jul;177(13):3680-6 PMID: 7601831
  38. In vitro binding of type 1-fimbriated Escherichia coli to uroplakins Ia and Ib: relation to urinary tract infections.
    Proc Natl Acad Sci U S A. 1996 Sep 3;93(18):9630-5 PMID: 8790381
  39. Reduced surface: an efficient way to compute molecular surfaces.
    Biopolymers. 1996 Mar;38(3):305-20 PMID: 8906967
  40. Prevention of mucosal Escherichia coli infection by FimH-adhesin-based systemic vaccination.
    Science. 1997 Apr 25;276(5312):607-11 PMID: 9110982
  41. Diversity of the Escherichia coli type 1 fimbrial lectin. Differential binding to mannosides and uroepithelial cells.
    J Biol Chem. 1997 Jul 11;272(28):17880-6 PMID: 9211945
  42. Pathogenic adaptation of Escherichia coli by natural variation of the FimH adhesin.
    Proc Natl Acad Sci U S A. 1998 Jul 21;95(15):8922-6 PMID: 9671780
  43. Hemolytic-uremic syndrome following urinary tract infection with enterohemorrhagic Escherichia coli: case report and review.
    Clin Infect Dis. 1998 Aug;27(2):310-5 PMID: 9709881
  44. Glycosylation sites and site-specific glycosylation in human Tamm-Horsfall glycoprotein.
    Glycobiology. 1999 Jan;9(1):21-30 PMID: 9884403
  45. GRASS: a server for the graphical representation and analysis of structures.
    Protein Sci. 1999 Mar;8(3):676-9 PMID: 10091670
  46. Amino acid residue Ala-62 in the FimH fimbrial adhesin is critical for the adhesiveness of meningitis-associated Escherichia coli to collagens.
    Mol Microbiol. 1999 Mar;31(6):1747-57 PMID: 10209747
  47. Fiber assembly by the chaperone-usher pathway.
    Biochim Biophys Acta. 2004 Nov 11;1694(1-3):259-67 PMID: 15546670
  48. Receptor binding studies disclose a novel class of high-affinity inhibitors of the Escherichia coli FimH adhesin.
    Mol Microbiol. 2005 Jan;55(2):441-55 PMID: 15659162
  49. Interaction of uropathogenic Escherichia coli with host uroepithelium.
    Curr Opin Microbiol. 2005 Feb;8(1):54-9 PMID: 15694857
  50. Tamm-Horsfall protein or uromodulin: new ideas about an old molecule.
    Nephrol Dial Transplant. 2005 Jul;20(7):1290-4 PMID: 15840660
  51. Molecular structure of adhesin domains in Escherichia coli fimbriae.
    Int J Med Microbiol. 2005 Oct;295(6-7):479-86 PMID: 16238022
  52. The distinct binding specificities exhibited by enterobacterial type 1 fimbriae are determined by their fimbrial shafts.
    J Biol Chem. 2005 Nov 11;280(45):37707-16 PMID: 16118220
Article Info
Journal
Molecular microbiology
Abbr.
Mol Microbiol
ISSN
0950-382X
Published
2006-09-00
Epub
2006-00-23
Pages
1556-68
Language
English
Region
England
NLM ID
8712028
PMCID
PMC1618777
Subset
IM
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