从海洋沉积物乳酸肠球菌(S-2)中提取的化合物的抗菌功效:通过体外和体内评估进行比较分析。

Muddukrishnaiah Kotakonda, Makesh Marappan
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引用次数: 0

摘要

背景:目的:从海洋沉积物细菌 Enterococcus Lactis (S-2) 中分离的抗菌化合物的体外和硅学抗菌活性:方法:从印度泰米尔纳德邦拉姆纳塔普拉姆地区的拉姆斯瓦兰采集沿海沉积物样本。使用挤压平板法分离细菌,并研究其表型和基因型特征。对纯化的细菌进行大量培养,提取次级代谢物,并从水提取物中分离出新型抗菌剂。对新型化合物的抗菌活性进行了体内和体外研究。高分辨率透射电子显微镜证实了抗菌活性的机理活动:水提取物对金黄色葡萄球菌(17 毫米抑菌区)和奇异变形杆菌(12 毫米抑菌区)具有抗菌活性。从 S-2 细菌的水提取物中分离出了一种生物活性分子,13-羟基-9-(1-羟乙基)-11-甲氧基-2,4-二氧杂戊环[10.7.1.0³,⁴.0⁵,²¹.0¹³,¹⁶]二茂-1(20),5,7,12,14(19),16-己-18-酮。色谱和光谱分析证实了所分离化合物的身份。新化合物对金黄色葡萄球菌具有潜在的抗菌活性(18 毫米抑菌区),MIC 值为 250 μg/mL,四氮唑染色证实了这一点。透射电子显微镜证实了其抗菌机制。分子对接研究表明,该化合物与 3U2D 的结合良好(-9.9 kcal/mol),而分子动力学模拟研究则证实了 3U2D 与 13-羟基-9-(1-羟乙基)-11-甲氧基-2,4-二氧杂戊环[10.7.1.0³,⁴.0⁵,²¹.0¹³,¹⁶]icosa-1(20),5,7,12,14(19), 16-hexane-18-one.从 3U2D 与标准药物环丙沙星的对接研究中可以看出,3U2D 与测试配体的亲和力较低,对接得分为 7.3 kcal/mol。在蛋白质 3U2D 的相互作用残基中,Thr173 和 Ile86 形成了常规氢键:海洋细菌乳酸杆菌产生了一种新型抗菌化合物(13-羟基-9-(1-羟乙基)-11-甲氧基-2,4-二氧杂戊环[10.7.1.0³,⁴.0⁵,²¹.0¹³,¹⁶]icosa-1(20),5,7,12,14(19),16-己烷-18-酮),它对临床金黄色葡萄球菌具有抗菌活性,体外和体内分析均证实了这一点。该分子可作为具有抗菌活性的先导分子。
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The Antibacterial Efficacy of a Compound Extracted from Marine Sediment Bacterium Enterococcus Lactis (S-2): A Comparative Analysis Through In-Vitro and In-Silico Assessments.

Background: Marine sediment bacteria have been generating considerable attention lately due to their potential as valuable reservoirs of novel antimicrobial agents.

Aim: In vitro and in silico antibacterial activities of antibacterial compounds isolated from the marine sediment bacterium Enterococcus Lactis (S-2).

Methods: Coastal sediment samples were collected from Rameswaram, Ramnathapuram District, Tamil Nadu, India. Bacteria were isolated using the crowded plate method, and their phenotypic and genotypic characteristics were studied. Purified bacteria were cultured in large volumes, secondary metabolites were extracted, and novel antibacterial agents were isolated from the aqueous extract. Novel compound antibacterial activity was studied through in-silico and invitro. The mechanism activity of antibacterial activity was confirmed by a high-resolution transmission electron microscope.

Results: Genotypic analysis confirmed that the isolated S-2 bacteria were Enterococcus lactis, and the aqueous extract showed antibacterial activity against Staphylococcus aureus (17 mm zone of inhibition) and Proteus mirabilis (12 mm zone of inhibition). A bioactive molecule, 13- hydroxy-9-(1-hydroxyethyl)-11-methoxy-2,4dioxapentacyclo[10.7.1.0³,⁴.0⁵,²¹.0¹³,¹⁶]icosa- 1(20),5,7,12,14(19), 16-hexane-18-one, was isolated from aqueous extracts of the S-2 bacterium. Chromatography and spectroscopic analysis confirmed the identity of the isolated compound. Novel compound potential antibacterial activity showing against S. aureus (18 mm zone of inhibition) and MIC 250 μg/mL, which was confirmed by tetrazolium staining. The antibacterial activity mechanism was confirmed by transmission electron microscopy. Molecular docking studies show good binding (-9.9 kcal/mol) of the compound with 3U2D, while molecular dynamic simulation studies confirm the conformationally stable structure of the complex between 3U2D and 13-hydroxy-9-(1-hydroxyethyl)-11-methoxy-2,4-dioxapentacyclo [10.7.1.0³,⁴.0⁵,²¹.0¹³,¹⁶]icosa-1(20),5,7,12,14(19), 16-hexane-18-one. It has been observed from the docking study of 3U2D with standard drug ciprofloxacin that the lower affinity is compared to the test ligand, which has a docking score of 7.3 kcal/mol. Out of interacting residues of protein 3U2D residue, Thr173 and Ile86 formed conventional hydrogen bonds.

Conclusion: Marine bacterium E. lactis produces a novel antibacterial compound (13-hydroxy- 9-(1-hydroxyethyl)-11-methoxy-2,4-dioxapentacyclo[10.7.1.0³,⁴.0⁵,²¹.0¹³,¹⁶]icosa- 1(20),5,7,12,14(19),16-hexane-18-one), which shows antibacterial activity against clinical S. aureus, confirmed by in vitro and in silico analysis. This molecule can used as a lead molecule for antibacterial activity.

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