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PMID: 6418761 Published · ppublish English Comparative Study Journal Article Research Support, U.S. Gov't, Non-P.H.S.

Differentiation of Bacillus anthracis and other Bacillus species by lectins.

Journal of clinical microbiology ·Vol. 19 ·No. 1 ·1984-01-00 ·Pages 48-53

Cole HB, Ezzell JW, Keller KF, Doyle RJ

Abstract

Bacillus anthracis was agglutinated by several lectins, including those from Griffonia simplicifolia, Glycine max, Abrus precatorius, and Ricinus communis. Some strains of Bacillus cereus var. mycoides (B. mycoides) were strongly reactive with the lectin from Helix pomatia and weakly reactive with the G. max lectin. The differential interactions between Bacillus species and lectins afforded a means of distinguishing B. anthracis from other bacilli. B. cereus strains exhibited heterogeneity with respect to agglutination patterns by lectins but could readily be differentiated from B. anthracis and the related B. mycoides. Spores of B. anthracis and B. mycoides retained lectin receptors, although the heating of spores or vegetative cells at 100 degrees C resulted in a decrease in their ability to be specifically agglutinated. Fluorescein-conjugated lectin of G. max stained vegetative cells of B. anthracis uniformly, suggesting that the distribution of lectin receptors was continuous over the entire cellular surface. B. anthracis cells grown under conditions to promote the production of capsular poly(D-glutamyl peptide) were also readily agglutinated by the lectins, suggesting that the lectin reactive sites penetrate the polypeptide layer. Trypsin, subtilisin, lysozyme, and mutanolysin did not modify the reactivity of B. anthracis with the G. max agglutinin, although the same enzymes markedly diminished the interaction between the lectin and B. mycoides. Because the lectins which interact with B. anthracis are specific for alpha-D-galactose or 2-acetamido-2-deoxy-alpha-D-galactose residues, it is likely that the bacteria possess cell surface polymers which contain these sugars. Lectins may prove useful in the laboratory identification of B. anthracis and possibly other pathogenic Bacillus species, such as B. cereus.

MeSH Terms
Agglutination Tests Bacillus/chemistry,classification Bacillus anthracis/chemistry,classification Bacillus cereus/classification Lectins/pharmacology Peptide Hydrolases/pharmacology Receptors, Mitogen/analysis Spores, Bacterial/chemistry
Chemicals
Lectins Receptors, Mitogen Peptide Hydrolases
Authors & Affiliations
4 authors, click to expand affiliations / ORCID
Cole H B
Ezzell J W
Keller K F
Doyle R J
References (28)
28 references, click to expand
  1. [On the terminal groupings of the immuno-specific polysaccharide of Bacillus anthracis].
    C R Hebd Seances Acad Sci. 1962 Jan 29;254:944-5 PMID: 14472991
  2. Broad-spectrum bacterial agglutinating activity in the serum of the Horsehoe crab, Limulus polyphemus.
    Dev Comp Immunol. 1978 Feb;2(1):65-76 PMID: 646864
  3. Effect of plant lectins on gamma phage receptor sites of Bacillus anthracis.
    Jpn J Microbiol. 1976 Apr;20(2):147-9 PMID: 820896
  4. Lectins in diagnostic microbiology: use of wheat germ agglutinin for laboratory identification of Neisseria gonorrhoeae.
    J Clin Microbiol. 1979 Nov;10(5):669-72 PMID: 94598
  5. Bacterial spore antigens: a review.
    J Gen Microbiol. 1962 Jul;28:393-408 PMID: 14480396
  6. DNA competition studies within the Bacillus cereus group of bacilli.
    J Gen Microbiol. 1972 Nov;73(2):257-65 PMID: 4630545
  7. A phage-fluorescent antiphage staining system for Bacillus anthracis.
    J Infect Dis. 1961 Mar-Apr;108:125-35 PMID: 13724139
  8. Mutanolysin, bacteriolytic agent for cariogenic Streptococci: partial purification and properties.
    Antimicrob Agents Chemother. 1974 Aug;6(2):156-65 PMID: 15828186
  9. Isolation of the teichoic acid of Bacillus subtilis 168 by affinity chromatography.
    Prep Biochem. 1973;3(1):13-8 PMID: 4199049
  10. Bacillus cereus food poisoning.
    N Engl J Med. 1978 Jan 19;298(3):143-4 PMID: 413036
  11. Comparative study of the agglutinogens of the endospores of Bacillus anthracis and Bacillus cereus.
    J Bacteriol. 1960 Mar;79:435-41 PMID: 14413545
  12. A Bacteriophage for B. anthracis.
    J Bacteriol. 1931 Mar;21(3):161-6 PMID: 16559476
  13. The lectins: carbohydrate-binding proteins of plants and animals.
    Adv Carbohydr Chem Biochem. 1978;35:127-340 PMID: 356549
  14. Differential media for the identification of Bacillus anthracis.
    J Bacteriol. 1965 Dec;90(6):1778-83 PMID: 4955058
  15. Specific identification of Bacillus anthracis by means of a variant bacteriophage.
    J Infect Dis. 1955 Jan-Feb;96(1):34-9 PMID: 14354236
  16. SYMPOSIUM ON PROBLEMS IN TAXONOMY.
    Bacteriol Rev. 1956 Dec;20(4):274-8 PMID: 16350146
  17. Efficacy of a fluorescent-antibody procedure for identifying Bacillus cereus in foods.
    Appl Microbiol. 1972 Nov;24(5):708-13 PMID: 4629698
  18. Interaction of concanavalin A with the cell wall of Bacillus subtilis.
    J Bacteriol. 1972 Feb;109(2):652-8 PMID: 4621684
  19. Differentiation of coagulase-positive and coagulase-negative staphylococci by lectins and plant agglutinins.
    J Clin Microbiol. 1982 Apr;15(4):547-53 PMID: 7068834
  20. [A study of the antigens of B. anthracis and B. cereus by means of luminescent-serologic and cytochemical technics].
    Zh Mikrobiol Epidemiol Immunobiol. 1966 Apr;43(4):98-103 PMID: 4978574
  21. PHAGE ISOLATED FROM LYSOGENIC BACILLUS ANTHRACIS.
    J Bacteriol. 1963 Jun;85:1423-30 PMID: 14047240
  22. Distribution of teichoic acid in the cell wall of Bacillus subtilis.
    J Bacteriol. 1975 Apr;122(1):152-8 PMID: 804466
  23. Bacillus cereus panophthalmitis: source of the organism.
    Rev Infect Dis. 1982 Jan-Feb;4(1):97-103 PMID: 6803328
  24. Antigenic relationship of the endospores of Bacillus cereus-like insect pathogens to Bacillus cereus and Bacillus anthracis.
    J Bacteriol. 1961 Apr;81:622-5 PMID: 13758406
  25. Fatty acids in the genus Bacillus. II. Similarity in the fatty acid compositions of Bacillus thuringiensis, Bacillus anthracis, and Bacillus cereus.
    J Bacteriol. 1968 Jun;95(6):2210-6 PMID: 4970227
  26. Deoxyribonucleic acid relatedness between Bacillus anthracis, Bacillus cereus and Bacillus thuringiensis.
    Microbiol Immunol. 1978;22(10):639-41 PMID: 105229
  27. Differentiation between spores of Bacillus anthracis and Bacillus cereus by a quantitative immunofluorescence technique.
    J Clin Microbiol. 1983 Jan;17(1):41-7 PMID: 6402519
  28. [Fluorescent serologic studies on cross reactions between spores of Bacillus anthracis and spores of other aerobic sporeforming bacteria].
    Zentralbl Veterinarmed B. 1977 Jun;24(6):497-507 PMID: 407757
Article Info
Journal
Journal of clinical microbiology
Abbr.
J Clin Microbiol
ISSN
0095-1137
Published
1984-01-00
Pages
48-53
Language
English
Region
United States
NLM ID
7505564
PMCID
PMC270976
Subset
IM
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