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High-level heterologous production and Functional Secretion by recombinant Pichia pastoris of the shortest proline-rich antibacterial honeybee peptide Apidaecin

机译:重组巴斯德毕赤酵母最短脯氨酸富集抗菌肽Apidaecin的高水平异源生产和功能分泌

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摘要

Drug resistance is a major problem in antibacterial chemotherapy. Apidaecins, which refer to a series of small, proline-rich antimicrobial peptides, are predominantly active against many drug-resistant bacteria. The apidaecins have special antibacterial mechanisms, and are non-toxic for human cells, a prerequisite for using them as novel antibiotic drugs. However, no efficient non-tagged apidaecin expression system has been reported, which is the limiting factor for their application. Here we successfully generated a Pichia pastoris transformant expressing and secreting apidaecin. However, expression was unstable and poor. Analysis of this revealed that the integration plasmid was frequently lost and that apidaecin expression resulted in cell death. Using N-methyl-N-nitro-N-nitroso-guanidine mutagenesis and selection, a mutant strain Apmu4 was derived, in which the rate of loss of the integration plasmid was much lower after induction, and which produced improved titres of apidaecin. Additionally, we discovered that using glucose as the sole carbon source to pre-culture the strain before induction could greatly enhance apidaecin production. A pilot-scale 10 L fermentation yielded 418 mg/L of recombinant apidaecin, which represents the highest reported yield of apidaecin. Consequently, this study reports the first super heterologous expression and secretion of apidaecin in yeast.
机译:耐药性是抗菌化疗中的主要问题。 Apidaecins是指一系列小的富含脯氨酸的抗微生物肽,主要对许多耐药细菌具有活性。阿迪霉素具有特殊的抗菌机制,并且对人细胞无毒,这是将它们用作新型抗生素的先决条件。然而,尚未报道有效的非标记的阿德霉素表达系统,这是其应用的限制因素。在这里,我们成功地产生了表达和分泌阿迪霉素的巴斯德毕赤酵母转化体。但是,表达不稳定且差。对此的分析表明,整合质粒经常丢失,并且阿霉素表达导致细胞死亡。使用N-甲基-N-硝基-N-亚硝基-胍诱变和选择,获得了突变菌株Apmu4,其中诱导后整合质粒的丢失率低得多,并产生了改进的滴度。此外,我们发现,使用葡萄糖作为唯一的碳源,在诱导前对菌株进行预培养可以大大提高阿迪霉素的产生。中试规模的10 L发酵产生了418 mg / L的重组阿德霉素,这是报道的最高的阿德霉素的产量。因此,该研究报道了酵母中第一个超高表达和分泌的阿迪霉素。

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