1887

Abstract

Summary: The penicillin-binding component (PBC) of is rapidly inactivated by acid but is more stable at neutral or alkaline pH values. At 2° various preparations lost 25–50% activity overnight at the optimum pH. Cell-free preparations of PBC (penicillin-binding cell walls or ‘lipid particles’) showed an initial increase in the amount of PBC available to penicillin. PBC was heat-labile, being completely destroyed by 5 min. at 50°. The final amount of penicillin bound did not vary over the range pH 4·4–7·6, but the rate of binding was somewhat greater at the lower end of this range. No separation of PBC from lipid particles was achieved by several mild techniques. Organic solvents which did not remove lipid material from intact cells also failed to affect PBC; more drastic solvent procedures which were effective in removing lipid appeared to destroy PBC. Intact cells or lipid particles from a penicillin-resistant yeast did not bind penicillin.

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/content/journal/micro/10.1099/00221287-12-1-100
1955-02-01
2024-05-03
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References

  1. Abraham E.P., Duthie E.S. 1946; Effect of pH of the medium on activity of streptomycin and penicillin and other chemotherapeutic substances. Lancet i:455
    [Google Scholar]
  2. Brodersen R. 1947; Stability of penicillin G in aqueous solution as a function of hydrogen-ion concentration and temperature. Acta pharm. tox., Kbh. 3:345
    [Google Scholar]
  3. Cooper P.D. 1954; The association of the penicillin-binding component of Staphylococcus aureus with a lipid fraction. J. gen. Microbiol. 10:236
    [Google Scholar]
  4. Cooper P.D., Clowes R.C., Rowley D. 1954; A note on the use of radioactive penicillin. J. gen. Microbiol. 10:246
    [Google Scholar]
  5. Daniel J.W., Johnson M.J. 1954; Properties of the penicillin-binding component of Micrococcus pyogenes. J. Bact. 67:321
    [Google Scholar]
  6. Eagle H., Levy M., Fleischman R. 1952; Effect of pH on the antibacterial activity of penicillin, streptomycin, chloramphenicol, terramycin and bacitracin. Antibiotics & Chemotherapy 2:563
    [Google Scholar]
  7. Few A.V., Cooper P.D., Rowley D. 1952; Reaction of penicillin with the staphylococcal cell wall. Nature; Lond.: 169:283
    [Google Scholar]
  8. Few A.V., Cooper P.D., Rowley D. 1953; Determination of radio-penicillin uptake by electrodialysis. Biochem. J. 53:xix
    [Google Scholar]
  9. Maass E.A., Johnson M.J. 1949a; Penicillin uptake by bacterial cells. J. Bact. 57:415
    [Google Scholar]
  10. Maass E.A., Johnson M.J. 1949b; The relations between bound penicillin and growth in Staphylococcus aureus. J. Bact. 58:361
    [Google Scholar]
  11. Mitchell P., Moyle J. 1951; The glyeerophospho-protein complex envelope of Micrococcus pyogenes. J. gen. Microbiol. 5:981
    [Google Scholar]
  12. Rowley D., Cooper P.D., Roberts P.W., Lester smith E. 1950; The site of action of penicillin. 1. Uptake of penicillin on bacteria. Biochem. J. 46:157
    [Google Scholar]
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