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Novel Bioactive Paulomycin Derivatives Produced by Streptomyces albus J1074

机译:用链霉菌胺制备的新型生物活性保真霉素衍生物Albus J1074

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Four novel paulomycin derivatives have been isolated from S. albus J1074 grown in MFE culture medium. These compounds are structural analogs of antibiotics 273a(2 alpha) and 273a(2 beta) containing a thiazole moiety, probably originated through an intramolecular Michael addition. The novel, thiazole, moiety-containing paulomycins show a lower antibiotic activity than paulomycins A and B against Gram-positive bacteria. However, two of them show an improved activity against Gram-negative bacteria. In addition, the four novel compounds are more stable in culture than paulomycins A and B. Thus, the presence of an N-acetyl-L-cysteine moiety linked to the carbon atom of the paulic acid isothiocyanate moiety, via a thioester bond, and the subsequent intramolecular cyclization of the paulic acid to generate a thiazole heterocycle confer to paulomycins a higher structural stability that otherwise will conduce to paulomycin degradation and into inactive paulomenols.
机译:从MFE培养基种植的S.B1074中分离出四种新的Pauaumycin衍生物。 这些化合物是含有噻唑部分的抗生素273a(2α)和273a(2β)的结构类似物,可能源于分子内迈克尔添加。 新型噻唑,含部分的保留霉素显示出比Pauaumycins A和B对抗革兰氏阳性细菌的抗生素活性。 然而,其中两个对革兰氏阴性细菌显示出改善的活性。 此外,该四种新化合物在培养中比Paulycins A和B更稳定。因此,通过硫酯键和硫酯键将与第硫酸异硫氰酸酯部分的碳原子连接的N-乙酰基-1-半胱氨酸部分的存在 将硫酸的随后的分子内环化产生噻唑氧杂环,赋予保留霉素更高的结构稳定性,否则将融入paulycin降解和惰性保留烯醇中。

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