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A non-polyene antifungal antibiotic from Streptomyces albidoflavus PU 23.

机译:一种来自Aleptoflavus链霉菌PU 23的非多烯抗真菌抗生素。

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In all 312 actinomycete strains were isolated from water and soil samples from different regions. All these isolates were purified and screened for their antifungal activity against pathogenic fungi. Out of these, 22% of the isolates exhibited activity against fungi. One promising strain, Streptomyces albidoflavus PU 23 with strong antifungal activity against pathogenic fungi was selected for further studies. Antibiotic was extracted and purified from the isolate. Aspergillus spp. was most sensitive to the antibiotic followed by other molds and yeasts. The antibiotic was stable at different temperatures and pH tested and there was no significant loss of the antifungal activity after treatment with various detergents and enzymes. Synergistic effect was observed when the antibiotic was used in combination with hamycin. The antibiotic was fairly stable for a period of 12 months at 4 degrees C. The mode of action of the antibiotic seems to be by binding to the ergosterol present in the fungal cell membrane resulting in the leakage of intracellular material and eventually death of the cell. The structure of the antibiotic was determined by elemental analysis and by ultraviolet (UV), Fourier transform infrared (FTIR), nuclear magnetic resonance (NMR) and liquid chromatography mass spectra (LCMS). The antibiotic was found to be a straight chain polyhydroxy, polyether, non-proteinic compound with a single double bond, indicating a nonpolyene antifungal antibiotic.
机译:从不同地区的水和土壤样品中分离出所有312种放线菌菌株。纯化所有这些分离物,并筛选其对病原真菌的抗真菌活性。在这些菌株中,有22%的分离株表现出抗真菌活性。选择一种有前途的菌株,对病原真菌具有强抗真菌活性的白色链霉菌PU 23。从分离物中提取并纯化抗生素。曲霉属对抗生素最敏感,其次是其他霉菌和酵母。抗生素在不同的温度和pH值下均保持稳定,并且在用各种清洁剂和酶处理后抗真菌活性没有明显损失。当抗生素与金霉素联合使用时,观察到协同作用。抗生素在4摄氏度下可稳定12个月。抗生素的作用方式似乎是与真菌细胞膜中存在的麦角固醇结合,导致细胞内物质泄漏,最终导致细胞死亡。 。通过元素分析,紫外线(UV),傅立叶变换红外(FTIR),核磁共振(NMR)和液相色谱质谱(LCMS)来确定抗生素的结构。发现该抗生素是具有单双键的直链多羟基,聚醚,非蛋白质化合物,表明是非多烯抗真菌抗生素。

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