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Molecular Characterization and Heterologous Production of the Bacteriocin Peocin a DNA Starvation/Stationary Phase Protection Protein from Paenibacillus ehimensis NPUST1

机译:细菌特异芽孢杆菌NPUST1的细菌饥饿/静止相保护蛋白细菌素Peocin的分子表征和异源生产。

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摘要

The production of a bacteriocin-like substance with antimicrobial activity, named peocin, by the probiotic Paenibacillus ehimensis NPUST1 was previously reported by our laboratory. The present study aimed to identify peocin and increase the peocin yield by heterologous expression in Escherichia coli BL21(DE3). Peocin was identified as a DNA starvation/stationary phase protection protein, also called DNA-binding protein from starved cells (Dps), by gel overlay and LC-MS/MS analysis. For mass production of peocin, fed-batch cultivation of E. coli was performed using a pH-stat control system. Purification by simple nickel affinity chromatography and dialysis yielded 45.3 mg of purified peocin from a 20-mL fed-batch culture (49.3% recovery). The biological activity of the purified peocin was confirmed by determination of the MIC and MBC against diverse pathogens. Purified peocin exhibited antimicrobial activity against aquatic, food spoilage, clinical and antibiotic-resistant pathogens. In an in vivo challenge test, zebrafish treated with purified peocin exhibited significantly increased survival rates after A. hydrophila challenge. The present study is the first to show the antimicrobial activity of Dps and provides an efficient strategy for production of bioactive peocin, which will aid the development of peocin as a novel antimicrobial agent with potential applications in diverse industries.
机译:益生菌埃希氏杆状菌NPUST1曾生产过一种具有抗菌活性的细菌素样物质,称为peocin。本研究旨在通过在大肠杆菌BL21(DE3)中进行异源表达来鉴定peocin并增加peocin的产量。通过凝胶覆盖和LC-MS / MS分析,将Peocin鉴定为一种DNA饥饿/静止期保护蛋白,也称为饥饿细胞(Dps)中的DNA结合蛋白。为了大量生产peocin,使用pH-stat控制系统进行大肠杆菌的分批补料培养。通过简单的镍亲和色谱法和透析纯化,从20 mL分批补料培养物中获得45.3 mg纯化的peocin(回收率为49.3%)。通过测定MIC和MBC对多种病原体的活性,可以确认纯化的peocin的生物活性。纯化的peocin对水生,食物变质,临床和抗生素耐药的病原体均表现出抗菌活性。在体内攻击试验中,用纯化的peocin处理的斑马鱼在嗜水链球菌攻击后显示出明显提高的存活率。本研究是第一个显示Dps抗菌活性的研究,并提供了生产生物活性Peocin的有效策略,这将有助于Peocin作为一种新型抗菌剂的开发,并在各种行业中具有潜在的应用。

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