Effect of Sodium Acetate on the Production of Sisomicin by Micromonospora inyoensis

Micromonospora inyoensis에 의한 Sisomicin 생산에서 Sodium Acetate의 영향

  • 최신원 (서울화성공업 주식회사) ;
  • 유연우 (아주대학교 공과대학 생물공학과)
  • Published : 1995.10.01

Abstract

This study was carried out to enhance the production of sisomicin by Micromonospora inyoensis ATCC 276000. The effect of various sugars and organic acids as the supplements to a basal mineral medium was tested for the sisomicin production by fully grown mycelium. Among the substances tested, acetate and citrate greatly increased the production of sisomicin at the sixth day of culture. Especially, in the basal mineral medium containing 0.1M sodium acetate, sisomicin production was 6.7 times more than that in the same medium with glucose. When 0.1M sodium acetate was added in the fermentation medium initially, the cell growth was inhibited by sodium acetate, although specific productivity was higher than that in the same medium without sodium acetate. On the contrary, when sodium acetate was added to the culture after three days, the sisomicin production and specific productivity were 1.6 times higher than those in the same medium without sodium acetate. The results suggested that sodium acetate was a stimulating substance of sisomicin production by M. inyoensis.

Keywords

References

  1. J. Antibiot. v.23 Antibiotics 6640, a new Micromonospora produced aminoglycoside antibiotics Weinstein,M.J.;A.Marquez;R.T.Testa;G.H.Wagman;E.M.Oden;J.A.Qaitz
  2. J. Chem. Soc. Chem. Commun. v.42 Structure of sisomicin, a novel unsaturated aminoglycoside antibiotic from M.inyoensis Cooper,D.J.;R.S.Jaret;H.Reimann
  3. J. Antibiot. v.23 Biological studies with antibiotic 6640, a new broad spectrum aminoglycoside antibiotic Waitz,J.A.;E.L.Jr.Moss;E.M.Oden;M.J.Weinstein
  4. Proc. Biochem. v.26 Micromonospora produced aminoglucoside antibiotics: chemistry and microbiology Berdy,J.;M.Jarai
  5. How do antibiotic-producing microorganisms avoid suicide? v.235 Demain,A.L.
  6. Biochemistry and Genetic regulation of Commercially Important Antibiotics Metabolic control of secondary biosynthetic pathways Demain,A.L.;Y.Aharonowitz;J.F.Martin
  7. Kor. J. Appl. Microbiol Bioeng. v.14 Factors affecting sisomicin production by Micromonospora inyoensis Lee,J.H.;G.H.Gil;Y.J.Cho;M.Y.Yoo
  8. Bacteriol. Rev. v.34 Biochemistry and regulation of streptomycin and mannosidostreptomycinase(α-D-mannosidase)formation Demain,A.L.;E.Inamine
  9. Biotechnol. Bioeng. v.15 Methionine control of cephalosporin C formation Drew,S.W.;A.L.Demain
  10. Process Biochem. v.8 Rifamycin fermentation studies Lancini,G.;R.J.White
  11. J. Ferment. Technol. v.49 Physiological studies on staphlomycin production.2. Formation of a substance effective in inducing staphylomycin production Yanagimoto,M.;G.Terui
  12. 한국생물공학회지 v.6 Neomycin 생산균주 S.fradiae의 항생물질 생산을 활성화 시키는 성분조사 김공환;구양모;황희숙;조영애;조희영
  13. Kor. J. Appl. Microbiol. Bioeng. v.17 Effect of mineral salts on the improvements of sisomicin yield Shin,C.S.;S.H.Han;S.H.Lee
  14. A Textbook of Industrial Microbiology(2nd Ed.) Cruger,W.;A.Cruger
  15. Infection 4(Suppl 4) v.4 The production of sisomicin Schmidt-Kastner,G.;H.Reimann
  16. 산업미생물학회지 v.20 Sisomicin발효에 대한 magnesium sulfate의 영향 한상헌;신철수
  17. J. Microbiol. Biotechnol. v.5 Effect of magnesium sulfate on product inhibition of sisomicin production Shin,C.S.;S.H.Han
  18. Appl. Microbiol. Biotechnol. v.28 Liberation of sisomicin from cells by sodium chloride Shin,C.S.;B.W.Ahn;S.H.Lee;S.U.Kim;S.H.Bok
  19. Agric. Biol. Chem. v.47 Carbon and nitrogen utilization by Micromonospora strain Kawamoto,I.;T.Oka;T.Nova
  20. Enzyme Microbiol. Technol. v.6 Carbon source regulation of cephem antibiotic production by resting cells of S.clavuliger and its reversal by protein synthesis inhibitors Hu,W.S.;A.F.Brana;A.L.Demain
  21. Antibiotics: An Integrated View Lancini,G.;F.Parenti
  22. Anal. Chem. v.31 Use of dinitrosalicylic acid reagent for determination of reducing sugar Miller,G.L.
  23. Anal. Biochem. v.72 A rapid and sensitive method of the quantitation of microgram quantities of protein utilizing the principle of protein-dye binding Bradford,M.M.