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2003 | 55 | 2 |

Tytuł artykułu

Wystepowanie i charakterystyka powierzchniowego bialka P-like paleczek Klebsiella

Warianty tytułu

Języki publikacji

PL

Abstrakty

PL
Właściwości nowo opisanej adhezyny P-like Klebsiella badano metodami hemaglutynacyjnymi, mikroskopowo-elektronowymi i biochemicznymi. Stwierdzono amorficzny charakter adhezyny i jej swoistość receptorową zbliżoną do adhezyny PapG E.coli.
EN
Colonisation and remaining of microorganism on mucus membrane of microorganism is tightly connected with adhesion mechanisms and determine the first step of physiological settlement of the organism or the first stage of clinically demonstrated infection. In Klebsiella rods there are known three types of fimbrial adhesins (type 1, 3 and KPF-28) and non-fimbrial adhesin CF29K. It is stated that Klebsiella strains adhesions are responsible for their adherence to the epithelial cells of both respiratory and urinary tracts and to intestine epithelium. The in vitro research affirmed Klebsiella rods adherence to protein matrix. The aim of our work was the establishment of character, receptor specifity and the appearance frequency of P-like called adhesin. The frequency of expression of P-like adhesin was estimated among 380 isolated from the patients strains on the basis of agglutinating methods. The amorphic character of P-like adhesin was proved using electron microscopy method. The isolation and purification of P-like protein with a help of affinity chromatography enabled to estimate the receptor specifity of the adhesin. The receptor specifity was established as similar to E.coli PapG adhesin.

Wydawca

-

Rocznik

Tom

55

Numer

2

Opis fizyczny

s.135-146,tab.,fot.,rys.,bibliogr.

Twórcy

  • Akademia Medyczna, ul.T.Chalubinskiego 4, 50-368 Wroclaw
autor

Bibliografia

  • 1. Bertin Y I, Girardeau JP, Darfeuille-Michaud A, Martin C. Epidemiological study of pap genes among diarrheagenic or septicemic E. coli strains producing CS31A and F17 adhesins and characterization of Pap 31A fimbriae. J Clin Microbiol 2000; 4: 1502-9.
  • 2. Boratyński J, Roy R. High temperature conjugation of proteins with carbohydrates. Glycoconjugate Journal 1998; 15:131-38.
  • 3. De Bruijn F J, Rademaker J L W. praca opublikowana na stronach internetowych www.msu.edu/user/debruijn/dnal-4
  • 4. Di Martino P, Liverelli V, Sirot D, Joly В і inni. New fimbrial antygen harbored by CAZ-5/SHV-4-producing Klebsiella pneumoniae strains involved in nosocomial infections. Infect Immnun 1996; 64: 2266-73.
  • 5. Duguid J P, Old C D. Adhesive properties of Enterobacteriaceae. Bacterial Adherence. E. Bachey Chapman and Hall. London 1980
  • 6. Fader R C, Avots-Avotins A E, Davis C D. Evidence for Pili-mediated Adherence of Klebsiella Pneumoniae to rat bladder epithelial cells in vitro. Infect Immun 1979; 729-37.
  • 7. Gamian A, Witkowska D, Mieszała M, i inni. Fimbrie as a carrier for antibacterial vaccines. Nova Acta Leopoldina NF 80 1999; 312: 265-72.
  • 8. Gong M, Makowski L. Helical structure of P pili from Escherichia coli. Evidence from X-ray fiber diffraction and scanning transmission electron microscopy. J Mol Biol 1992; 3: 735-42.
  • 9. Jansen В, Beuth J, Przondo-Mordarska A i inni. Adhesion of fimbriated and non-fimbriated Klebsiella strains to synthetic polymers. Zbl Bakt 1992; 267:205-12.
  • 10. Johnson J R, O'Bryan T T, Low D A i inni.. Evidence of commonality between canine and human extraintestinal pathogenic E. coli strains that express papG allele III. Infect and Immun 2000; 68: 3327-36.
  • 11. Johnson J R, Brown J J, Ahmed P. Diversity of hemagglutination phenotypes among P-fimbriated wild-type strains of E. coli in relation to papG allele repertoire. Clin And Diagn Lab Immun 1998; 5(2): 160-70.
  • 12. Kałużewski S, Jagielski M, Szych J, Andziak J. Występowanie fimbrii P u enteropatogennych pałeczek E. coli (EPEC) oraz u szczepów E. coli wyosobnionych od osób z zakażeniem układu moczowego. Med Dośw Mikrobiol 1991; 43: 87-94.
  • 13. Laemmli U K. Cleavage of structural proteins during the assembly of the head of bacteriophage T4. Nature (London) 1970: 680-85.
  • 14. Lisowska E , Duk M, Wu A M, BioMethods, Vol.7. Birkhaeuser Verlag Basel 1996
  • 15. Low D, Blin L. Interaction between pap-encoded pili and adhesin gene products of uropathogenic E.coli. Rev of Inf Dis 1998; 10 suppl.: 300-305.
  • 16. Podschun R, Sahly H. Hemagglutinins of Klebsiella pneumoniae and oxytoca isolated from different sources. Zbl Hyg Umweltmed 1991; 191: 46-52.
  • 17. Podschun R, Ullman U. Klebsiella spp. as nosocomial pathogens: epidemiology, taxonomy, typing methods, and pathogenicity factors. Clin Microb Rev 1998; 4: 589-603.
  • 18. Przondo- Mordarska A, Smutnicka D, Stankiewicz M, Pulverer G. P-like hemagglutinins in Klebsiella, poster 124, rezentowany na7 Kongresie Mikrobiologii Klinicznej. Wiedeń, 26-30 marzec, 1995
  • 19. Przondo-Hessek A, Pulverer G. Hemagglutinins of Klebsiella pneumoniae and Klebsiella oxytoca. Zbl Bact Microb Hyg 1983; Ser.A 255: 472-78.
  • 20. Przondo-Mordarska A, Gamian A, Ko L H, Pulverer G. Importance of Klebsiella fimbriae in adhesion. Zbl Bakt 1993; Suppl. 25: 59-68.
  • 21. Przondo-Mordarska A, Smutnicka D, Ko H L i inni. Adhesive properties of P-like fimbriae in Klebsiella -species. Zbl Bakt 1996; 284: 372-77.
  • 22. Roberts J A, Marklund В I, Uver D i inni. The Gal(?1-4)Gal-specific tip adhesion of E. coli P-fimbriae is needed for pyelonephritis to occur in the normal urinary tract. Proc Natl Acad Sci USA 1994; 91: 11889-93.
  • 23. Sambrook J, Fritsch E, Maniatis T. Molecular Cloning a Laboratory Manual. Cold Spring Harbour Laboratory Press. 2nd edn. NY 1989
  • 24. Staniszewska M, Witkowska D, Gamian A. Fimbrie jako czynniki patogenności bakterii i nośnik w szczepionkach koniugatowych. Post Hig Med Dośw 2000; 54: 727-47.
  • 25. Tarkkanen A M, Virkola R, Clegg S, Korhonen T K. Binding of the type 3 fimbriae of Klebsiella pneumoniae to human endothelial and urinary bladder cells. Infect Immun 1997; 65: 1546-49.

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Bibliografia

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