Sch 37137, A NOVEL ANTIFUNGAL COMPOUND PRODUCED BY A MICROMONOSPORA SP TAXONOMY, FERMENTATION, ISOLATION, STRUCTURE AND BIOLOGICAL PROPERTIES

A new antifungal compound, Sch 37137, was isolated from the cultured broth of a Micromonospora sp., SCC 1792. Sch 37137 is structurally related to A 19009, a dipeptide previously discovered from a Streptomyces sp. The compound was weakly active against species of Candida and dermatophytes (mean MICs...

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Published inJournal of antibiotics Vol. 41; no. 1; pp. 13 - 19
Main Authors COOPER, RAYMOND, HORAN, ANN C., GENTILE, FRANK, GULLO, VINCENT, LOEBENBERG, DAVID, MARQUEZ, JOSEPH, PATEL, MAHESH, PUAR, MOHINDAR S., TRUUMEES, IMBI
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Published Tokyo JAPAN ANTIBIOTICS RESEARCH ASSOCIATION 01.01.1988
Japan Antibiotics Research Association
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Abstract A new antifungal compound, Sch 37137, was isolated from the cultured broth of a Micromonospora sp., SCC 1792. Sch 37137 is structurally related to A 19009, a dipeptide previously discovered from a Streptomyces sp. The compound was weakly active against species of Candida and dermatophytes (mean MICs ≥128μg/ml) in Sabouraud dextrose, yeastnitrogen and modified Eagles minimum essential media; however activity against Candida sp. (mean MICs ≥12μg/ml) and dermatophytes (mean MICs ≥0.8μg/ml) significantly improved in MA medium.
AbstractList A new antifungal compound, Sch 37137, was isolated from the cultured broth of a Micromonospora sp., SCC 1792. Sch 37137 is structurally related to A 19009, a dipeptide previously discovered from a Streptomyces sp. The compound was weakly active against species of Candida and dermatophytes (mean MICs greater than or equal to 128 micrograms/ml) in Sabouraud dextrose, yeast-nitrogen and modified Eagles minimum essential media; however activity against Candida sp. (mean MICs greater than or equal to 12 micrograms/ml) and dermatophytes (mean MICs greater than or equal to 0.8 microgram/ml) significantly improved in MA medium.
A new antifungal compound, Sch 37137, was isolated from the cultured broth of a Micromonospora sp., SCC 1792. Sch 37137 is structurally related to A 19009, a dipeptide previously discovered from a Streptomyces sp. The compound was weakly active against species of Candida and dermatophytes (mean MICs ≥128μg/ml) in Sabouraud dextrose, yeastnitrogen and modified Eagles minimum essential media; however activity against Candida sp. (mean MICs ≥12μg/ml) and dermatophytes (mean MICs ≥0.8μg/ml) significantly improved in MA medium.
A new antifungal compound, Sch 37137, was isolated from the cultured broth of a Micromonospora sp., SCC 1792. The compound was weakly active against species of Candida and dermatophytes in Sabouraud dextrose, yeast-nitrogen and modified Eagles minimum essential media; however activity against Candida sp. and dermatophytes significantly improved in MA medium.
Author LOEBENBERG, DAVID
TRUUMEES, IMBI
MARQUEZ, JOSEPH
GULLO, VINCENT
HORAN, ANN C.
PUAR, MOHINDAR S.
COOPER, RAYMOND
PATEL, MAHESH
GENTILE, FRANK
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Issue 1
Keywords Fungi
Antifungal agent
Molecular structure
Taxonomy
Production
Isolation
Fermentation
Biological activity
Physicochemical properties
Thallophyta
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References 5) KINOSHITA, T.; Y. KASAHARA & N. NIMURA: Reversed phase high performance liquid chromatographic resolution of non esterified enantiomeric amino acids by derivatization with 2,3,4,6-tetra-O-acetyl-β-D-glucopyranosyl isothiocyanate and 2,3,4-tri-O-acetyl-β-D-arabinose pyranosyl isothiocyanate. J. Chromatogr. 210: 77-81, 1981
12) ACHENBACH, H.; A. MUHLENFELD, U. FAUTH & H. ZAHNER: Galbonolides A and B - two new non-glycosidic antifungal macrolides from Streptomyces galbus. Tetrahedron Lett. 26: 6167 - 6170, 1985
2) SKIRLING, E. B. & D. GOTTLIEB: Methods for characterization of Streptomyces species. Int. J. Syst. Bacteriol. 16: 313-340, 1966
13) FAUTH, U.; H. ZAHNER, A. MUHLENFELD & H. ACHENBACH: Galbonolides A and B - Two non-glycosidic antifungal macrolides. J. Antibiotics 39: 1760-1764, 1986
3) LECHEVALIER, M. P.: Identification of aerobic actinomycetes of clinical importance. J. Lab. Clin. Med. 71:934-944,1968
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8) ANDRUSZKIEWICZ, R.; H. CHMARA & E. BOROWSKI: Anticandidal activity of antibiotic A 19009 and its isomer. J. Antibiotics 37: 1479-1482, 1984
6) JACKMAN, L. M. & S. STERNHALL (Ed.): Applications of Nuclear Magnetic Resonance Spectroscopy in Organic Chemistry. 2nd Ed. p. 224, Pergamon Press, New York, 1969
7) VAN DER BAAN, J. L.; J. W. F. K. BARNICK & F. BICKELHAUPT: Antibiotic A 19009. Structural investigation and synthesis. J. Antibiotics 36: 784-792, 1983
10) TAKATSU, T.; H. NAKAYAMA, A. SHIMAZU, K. FURIHATA, K. IKEDA, K. FURIHATA, H. SETO & N. OTAKE: Rustmicin, a new macrolide antibiotic active against wheat stem rust fungus. J. Antibiotics 38: 1806-1809, 1985
11) ABE, Y.; H. NAKAYAMA, A. SHIMAZU, K. FURIHATA, K. IKEDA, K. FURIHATA, H. SETO & N. OTAKE: Neorustmicin A, a new macrolide antibiotic active against wheat stem rust fungus. J. Antibiotics 38: 1810-1812, 1985
4) The Merck Index: An Encyclopedia of Chemicals, Drugs, and Biologicals. 10th Ed. Ed., M. WINDHOLZ, Merck & Co., Inc., Rahway, 1983
1) MOLLOY, B. B.; D. H. LIVELY, R. M. GALE, M. GORMAN, L. D. BOECK, C. E. HIGGENS, R. E. KASTNER, L. L. HUCKSTEP & N. NEUSS: A new dipeptide antibiotic from Streptomyces collinus, LINDENBEIN. J. Antibiotics 25: 137-140, 1972
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Snippet A new antifungal compound, Sch 37137, was isolated from the cultured broth of a Micromonospora sp., SCC 1792. Sch 37137 is structurally related to A 19009, a...
A new antifungal compound, Sch 37137, was isolated from the cultured broth of a Micromonospora sp., SCC 1792. The compound was weakly active against species of...
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SubjectTerms Amino Acids, Diamino - biosynthesis
Amino Acids, Diamino - pharmacology
Antibiotics
Antibiotics. Antiinfectious agents. Antiparasitic agents
Antifungal agents
Antifungal Agents - biosynthesis
Antifungal Agents - isolation & purification
Antifungal Agents - pharmacology
Biological and medical sciences
Biotechnology
Chemical Phenomena
Chemistry
Fermentation
Fundamental and applied biological sciences. Psychology
Health. Pharmaceutical industry
Industrial applications and implications. Economical aspects
Medical sciences
Micromonospora
Micromonospora - metabolism
Pharmacology. Drug treatments
Production of active biomolecules
Subtitle TAXONOMY, FERMENTATION, ISOLATION, STRUCTURE AND BIOLOGICAL PROPERTIES
Title Sch 37137, A NOVEL ANTIFUNGAL COMPOUND PRODUCED BY A MICROMONOSPORA SP
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