Synthesis and Determination of Antimicrobial Efficacies of Secondary Metabolite of Streptomyces longisporoflavus and its 3D-Protein Structural Prediction

O. N. Majolagbe, Felicia Oguntunji, E. G. Adeyeni, Y. M. Feruke-Bello, L. Ezediuno
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Abstract

Aims: The need for new drug molecules is of high significance considering the rate at which pathogenic bacteria evolve into drug-resistant pathogens. Actinomycetes have been reported as valuable biological agents that possess potent bioactive molecules. This work aims to isolate local strains of actinomycetes in the environment and determine their antimicrobial activities against some clinical isolates. Study Design: This was an in-vitro study. Place and Duration of Study: The research was carried out at the Microbial Resources Research Laboratory, Department of Pure and Applied Biology, Ladoke Akintola University of Technology Ogbomoso, Nigeria between January 2020 and December, 2021. Methodology: Phenotypic and molecular methods of identification of the isolated microorganisms were done. A secondary metabolite of the isolate was obtained. An antibiotic sensitivity test of its metabolites was performed using ten (10) clinical isolates; inhibition zones were measured and recorded for each test organism. Gas chromatography-mass spectrometry (GC-MS) was used to determine the probable bioactive molecules present in the metabolite. The nucleotide sequences of the isolate were translated using Phyre2 and viewed with PyMOL. Results: The isolate was identified as Streptomyces longisporoflavus. Various zones of inhibition were recorded for each of the tested pathogenic organisms. Five (5) bioactive molecules were identified in the metabolites, with butane-1,1-dibutoxy-2 (1H)-quinolone having the highest peak area. The PYMOL result shows that the protein structure has a 64% identity as a binding molecule. Conclusion: This study reveals that the local isolates of S. longisporoflavus showed promising antimicrobial potential with bioactive molecules that are potent inhibitors of pathogenic organisms.
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长孔黄链霉菌次生代谢物的合成、抑菌活性测定及其3d蛋白结构预测
目的:考虑到致病菌进化为耐药病原体的速度,对新药物分子的需求具有重要意义。放线菌已被报道为具有强效生物活性分子的有价值的生物制剂。本工作旨在分离环境中的放线菌本地菌株,并测定其对一些临床分离株的抗菌活性。研究设计:这是一项体外研究。研究地点和时间:该研究于2020年1月至2021年12月在尼日利亚奥格博莫索拉多克阿金托拉理工大学纯与应用生物系微生物资源研究实验室进行。方法:对分离的微生物进行表型和分子鉴定。获得了该分离物的次级代谢物。使用十(10)个临床分离株对其代谢物进行抗生素敏感性试验;测量并记录每个试验生物的抑制区。采用气相色谱-质谱联用(GC-MS)测定代谢物中可能存在的生物活性分子。分离物的核苷酸序列用Phyre2翻译,用PyMOL观察。结果:该分离物经鉴定为长孔黄链霉菌。不同的抑制区被记录为每一个测试的致病生物。在代谢产物中鉴定出5个生物活性分子,其中丁烷-1,1-二丁氧基-2 (1H)-喹诺酮的峰面积最大。PYMOL结果表明,该蛋白结构具有64%的结合分子特性。结论:本研究表明,当地分离的长孔黄葡萄球菌具有良好的抗菌潜力,其生物活性分子是病原菌的有效抑制剂。
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