Detection and Investigation of Some Properties of the Regulators of Antibiotic Biosynthesis Produced by Streptomyces Strains S. sp. AN26 and S. sp. B35

Q4 Biochemistry, Genetics and Molecular Biology Mikrobiolohichnyi zhurnal Pub Date : 2021-12-17 DOI:10.15407/microbiolj83.06.049
B. Matselyukh
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Abstract

The aim of this work was the isolation, purification and some properties investigation of two regulators of antibiotic biosynthesis of streptomycetes. Methods includes extraction of regulators from agar cultures and their concentration by vacuum rotary evaporator, thin layer chromatography and spectrophotometry. Results. Two strains of streptomycetes AN26 and B35 isolated from soils of different regions of Ukraine produce the regulators restoring the landomycin E biosynthesis and sporulation in mutant strain Streptomyces globispoprus 1912-B2. Both regulators were purified by thin layer chromatography and have the same Rf 0.69. Absorption curves of regulators were established by means of spectrophotometry. Maxima of absorption of regulators were 232.5 nm. The next study of the isolated regulators by means of NMR will give the possibility to elucidate their molecular structures. Conclusions. It is shown that two strains of streptomycetes isolated from the soils of Askania Nova and Brovary produce transcriptional regulators such as signaling molecules, which, like A-factor, restore the biosynthesis of antibiotics landomycin E and streptomycin in test strains S. globisporus 1912-B2 and S. griseis 1439, respectively. In terms of absorption maxima, they are similar and differ from similar indicators of known regulators of streptomycetes. It is possible that these compounds belong to new, not yet described signaling molecules, and the answer to this question will give future studies of their molecular structure by NMR spectroscopy.
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链霉菌S. sp. AN26和S. sp. B35产抗生素生物合成调控因子的检测与特性研究
本文对链霉菌合成抗生素的两种调节因子进行了分离纯化和性质研究。方法包括从琼脂培养物中提取调节剂,并通过真空旋转蒸发器、薄层色谱和分光光度法进行浓度测定。结果。从乌克兰不同地区土壤中分离的两株链霉菌AN26和B35产生了恢复突变株全球链霉菌1912-B2中陆霉素E生物合成和产孢的调节因子。两种调节剂均经薄层色谱纯化,具有相同的Rf 0.69。用分光光度法建立了调节剂的吸收曲线。调节剂的最大吸光度为232.5 nm。下一步对分离调控分子的核磁共振研究将为阐明其分子结构提供可能。结论。结果表明,从Askania Nova和Brovary土壤中分离的两株链霉菌产生信号分子等转录调节因子,与a因子一样,恢复了测试菌株S. globisporus 1912-B2和S. griseis 1439中抗生素陆霉素E和链霉素的生物合成。就吸收最大值而言,它们与已知链霉菌调节剂的类似指标相似,但又不同。这些化合物可能属于新的,尚未被描述的信号分子,这个问题的答案将为未来通过核磁共振光谱研究它们的分子结构提供帮助。
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Mikrobiolohichnyi zhurnal
Mikrobiolohichnyi zhurnal Medicine-Microbiology (medical)
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