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PMID: 6389363 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't Research Support, U.S. Gov't, Non-P.H.S. Research Support, U.S. Gov't, P.H.S.

Flagella of Salmonella typhimurium are a virulence factor in infected C57BL/6J mice.

Infection and immunity ·Vol. 46 ·No. 3 ·1984-12-00 ·Pages 814-8

Carsiotis M, Weinstein DL, Karch H, Holder IA, O'Brien AD

Abstract

To determine whether flagella, chemotaxis, and motility of Salmonella typhimurium are virulence factors in infected C57BL/6J mice, we constructed isogenic pairs of derivatives of the nonfimbriated virulent strain SL3201. Of each pair, one member contained a mutation in a single gene that is required for expression of normal chemotactically directed motility, whereas the other member contained the wild-type form of the gene. No additional differences between the members of a pair were evident. The phenotypic parameters examined for all derivatives included in vitro growth rate, sensitivity to P22 phage, amino acid auxotrophy, and biotype. For a flagellated and nonflagellated pair, the electron microscopic appearance of each member was examined as well as its lipopolysaccharide and outer membrane profiles by sodium dodecyl sulfate-polyacrylamide gel electrophoresis. The virulence of the various derivatives was then assessed in mice challenged orally, intraperitoneally, or intravenously. The results established that flagella, whether functional or nonfunctional as organelles of motility, were S. typhimurium virulence factors and that neither chemotaxis nor motility was required for virulence.

MeSH Terms
Animals Bacterial Proteins/physiology Chemotaxis Flagellin/physiology Mice Mice, Inbred C57BL/microbiology Movement Salmonella typhimurium/genetics,pathogenicity
Chemicals
Bacterial Proteins Flagellin
Authors & Affiliations
5 authors, click to expand affiliations / ORCID
Carsiotis M
Weinstein D L
Karch H
Holder I A
O'Brien A D
References (22)
22 references, click to expand
  1. A modification of the Lowry procedure to simplify protein determination in membrane and lipoprotein samples.
    Anal Biochem. 1978 Jun 15;87(1):206-10 PMID: 98070
  2. Linkage map of Salmonella typhimurium, Edition VI.
    Microbiol Rev. 1983 Sep;47(3):410-53 PMID: 6314110
  3. Isolation, characterization and complementation of Salmonella typhimurium chemotaxis mutants.
    J Mol Biol. 1975 Sep 15;97(2):225-35 PMID: 1100857
  4. A phage P22 gene controlling integration of prophage.
    Virology. 1967 Feb;31(2):207-16 PMID: 6021093
  5. Transduction of flagellar characters in Salmonella.
    J Gen Microbiol. 1953 Dec;9(3):410-33 PMID: 13118089
  6. A simplified ultrasensitive silver stain for detecting proteins in polyacrylamide gels.
    Anal Biochem. 1980 Jul 1;105(2):361-3 PMID: 6161559
  7. Flagella help Salmonella typhimurium survive within murine macrophages.
    Infect Immun. 1984 Dec;46(3):819-25 PMID: 6389364
  8. Association of type 1 pili with the ability of livers to clear Salmonella typhimurium.
    Infect Immun. 1982 Jun;36(3):1168-74 PMID: 6124504
  9. Role of motility in experimental cholera in adult rabbits.
    Infect Immun. 1978 Nov;22(2):387-92 PMID: 730361
  10. Hfr formation directed by tn10.
    Genetics. 1979 Apr;91(4):639-55 PMID: 17248903
  11. Loss of virulence associated with absence of flagellum in an isogenic mutant of Pseudomonas aeruginosa in the burned-mouse model.
    Infect Immun. 1982 Dec;38(3):1296-8 PMID: 6818148
  12. The role of the flagellum in the adherence of Vibrio cholerae.
    J Infect Dis. 1983 May;147(5):864-72 PMID: 6842021
  13. Electrophoretic resolution of the "major outer membrane protein" of Escherichia coli K12 into four bands.
    FEBS Lett. 1975 Oct 15;58(1):254-8 PMID: 773686
  14. Aromatic-dependent Salmonella typhimurium are non-virulent and effective as live vaccines.
    Nature. 1981 May 21;291(5812):238-9 PMID: 7015147
  15. Functional homology of chemotaxis genes in Escherichia coli and Salmonella typhimurium.
    J Bacteriol. 1979 Jul;139(1):107-14 PMID: 378950
  16. Genetic engineering in vivo using translocatable drug-resistance elements. New methods in bacterial genetics.
    J Mol Biol. 1977 Oct 15;116(1):125-59 PMID: 338917
  17. Genetical studies of non-flagellate mutants of Salmonella.
    J Gen Microbiol. 1966 Jun;43(3):315-27 PMID: 5336472
  18. Six widespread bacterial clones among Escherichia coli K1 isolates.
    Infect Immun. 1983 Jan;39(1):315-35 PMID: 6218094
  19. Resistance of inbred mice to Salmonella typhimurium.
    J Infect Dis. 1972 Oct;126(4):378-86 PMID: 4403914
  20. Phage P22-mutants with increased or decreased transduction abilities.
    Mol Gen Genet. 1972;119(1):75-88 PMID: 4564719
  21. Genetics of resistance to infection with Salmonella typhimurium in mice.
    J Infect Dis. 1976 Jan;133(1):72-8 PMID: 1107437
  22. Alteration of the immunoglobulin G subclass responses in mice to lipopolysaccharide: effects of nonbacterial proteins and bacterial membrane phospholipids or outer membrane proteins of Proteus mirabilis.
    Infect Immun. 1983 Apr;40(1):157-65 PMID: 6187689
Article Info
Journal
Infection and immunity
Abbr.
Infect Immun
ISSN
0019-9567
Published
1984-12-00
Pages
814-8
Language
English
Region
United States
NLM ID
0246127
PMCID
PMC261618
Subset
IM
Grants
NIAID NIH HHS · AI-17754 · United States
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