Binding sites for lead ion in staphylococcus epidermidis

  • Kim, Mal-Nam (Department of Biology, Sangmyung Womens University) ;
  • Sung, Hye-Yoon (Department of Biology, Sangmyung Womens University)
  • 발행 : 1995.09.01

초록

As S. epidermidis cell was fractionated into cell wall, cell membrane, and cytoplasm, the cell membrane proved to be the most efficient absorbent for lead ion. Utrasonication was effective, when the cells were treated during their exponential growth. The amount of the lead ion adsorbed in cell membrane decreased as hydrogen ion concentration of solution increased. Protein purified from the cell membrane showed higher adsorption capacity for the lead ion than peptidoglycan, teichoic acid from cell wall, or cell membrane lipid. Modification of carboxyl groups in the membrane protein with ethylenediamine and 1-ethyl-3-carbodiimide hydrochloride resulted in a considerable decrease of lead ion adsorption capability, suggesting that the main binding site for lead ion was the carboxyl groups of protein in cell membrane.

키워드

참고문헌

  1. J. Gen. Microbiol. v.128 Production and tolerance of ethanol in relation to phospholipid fatty acyl composition in Saccharomyces cerevisiae NCYC 431 Beaven,M.J.;C.Charpentier;A.H.Rose
  2. J. Bacteriol. v.127 Uptake and retention of metals by cell walls of Bacillus subtilis Beveridge,T.J.;R.G.E.Murry
  3. J. Bacteriol. v.141 Sites of metal deposition in the cell wall of Bacillus subtilis Beveridge,T.J.;R.G.E.Murry
  4. Enz. Microbiol. Technol. v.16 Binding of heavy metals by the walls of Saccharomyces cerevisiae Brady,D.;J.R.Duncan
  5. Eur. J. Biochem. v.45 Energy-dependent zinc transport by Escherichia coli Bucheder,F.;E.Broda
  6. Biotechnol. Lett. v.17 Effect of heavy metal uptake on the electrokinetic properties of Saccharomyces cerevisiae Chen,P.;Y.P.Ting
  7. J. Bacteriol. v.109 Interaction of concanavalin A with the cell wall of Bacillus subtilis Doyle,R.J.;D.C.Birdsell
  8. J. Bacteriol. v.143 Chemical basis for selectivity of metal by the Bacillus subtilis cell wall Doyle,R.J.;T.H.Matthews;U.N.Streips
  9. Appl. Biochem. Microbiol. v.30 Effect of mycelium pretreatment on lead ion adsorption by Aspergillus niger Feofilora,E.P.;A.P.Mar'in;V.M.Tereshina
  10. Appl. Environ. Microbiol. v.56 Remobilization of toxic heavy metals adsorbed to bacterial wall-clay composite Flemming,C.A.;F.G.Ferris;T.J.Beveridge;G.W.Bailey
  11. Microbial mineral recovery Fungi and yeasts for metal accumulation Gadd,G.M.;Ehrlich H.L. Brierley(ed.)
  12. J. Microbiol. v.30 Metal binding by the peptidoglycan sacculus of Escherichia coli K-12 Can Hoyle,B.D.;T.J.Beveridge
  13. Immobilization of ions by biosorption Diversity of biopolymer structure and its potential for ion binding application Hunt,S.;H.Eccles(ed.);S.Hunt(ed.)
  14. Kor. J. Microbiol. v.30 The uptake of lead ion with Staphylococcus epidermidis Kim,J.H.;M.N.Kim
  15. Biochem. J. v.149 The interaction of magnesium ion with teichoic acid Lambert,P.A.;I.C.Hancock;J.Baddiley
  16. Kor. J. Microbiol. v.24 Partial purification of the outer membrane-assosiated 2-furaldehyde dehydrogenase from Klebsiella pneumoniae Lee,J.W.;B.U.Lee;S.O.Kang;Y.C.Hah;B.S.Yoo;H.E.Han
  17. Principles of biochemistry Lehninger,A.L.
  18. J. Biol. Chem. v.193 Protein measurement with the folin phenol reagent Lowry,O.H.;N.J.Rosebrough;A.L.Farr;R.S.Rondall
  19. Can. J. Microbiol. v.22 Cation exchange in cell walls of Gram-positive bacteria Marquis,R.;K.Mayzel;E.L.Carstensen
  20. Metal ions in biological systems Bioinorganic chemistry of metal toxicity Martin,R.B.;Sigel(ed.)
  21. J. Biochem. v.84 Separation and characterization of the outer membrane of Pseudomonas aeruginosa Mizuno,T.;M.Kageyama
  22. Appl. Microbiol. Biotechnol. v.12 Studies on the accumulation of heavy metal element in biological systems. XVII. Selective accumulation of heavy metal ions by Chlorella regularis Nakajima,A.;T.Horikoshi;T.Sakaguchi
  23. Radioecology of aquatic organisms Polikarpov,G.C.
  24. J. Bacteriol. v.104 Protein composotion of the cell wall and cytoplasmic membrane of Escherichia coli Schnaitman,C.A.
  25. J. Bacteriol. v.114 Teichoic acid of a stabilized L-form of Streptococcus pyogenes Slabyj,B.M.;C.Panos
  26. Appl. Environ. Microbiol. v.47 Uptake of metal ions by Rhizopus arrhizus biomass Tobin,J.M.;D.G.Cooper;R.J.Neufeld