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PARAGEN 1.0:用于快速无细胞细菌素合成的标准化合成基因文库。

PARAGEN 1.0: A Standardized Synthetic Gene Library for Fast Cell-Free Bacteriocin Synthesis.

作者信息

Gabant Philippe, Borrero Juan

机构信息

Syngulon, Seraing, Belgium.

出版信息

Front Bioeng Biotechnol. 2019 Sep 6;7:213. doi: 10.3389/fbioe.2019.00213. eCollection 2019.

Abstract

The continuous emergence of microbial resistance to our antibiotic arsenal is widely becoming recognized as an imminent threat to global human health. Bacteriocins are antimicrobial peptides currently under consideration as real alternatives or complements to common antibiotics. These peptides have been much studied, novel bacteriocins are regularly reported and several genomic databases on these peptides are currently updated. Despite this, to our knowledge, a physical collection of bacteriocins that would allow testing and comparing them for different applications does not exist. Rapid advances in synthetic biology in combination with cell-free protein synthesis technologies offer great potential for fast protein production. Based on the amino acid sequences of the mature peptide available in different databases, we have built a bacteriocin gene library, called PARAGEN 1.0, containing all the genetic elements required for cell-free peptide synthesis. Using PARAGEN 1.0 and a commercial kit for cell-free protein synthesis we have produced 164 different bacteriocins. Of the bacteriocins synthesized, 54% have shown antimicrobial activity against at least one of the indicator strains tested, including Gram-positive and Gram-negative bacteria representing commonly used lab strains, industrially relevant microorganisms, and known pathogens. This bacteriocin collection represents a streamlined pipeline for selection, production, and screening of bacteriocins as well as a reservoir of ready-to-use antimicrobials against virtually any class of relevant bacteria.

摘要

微生物对我们抗生素武器库的耐药性不断出现,这已被广泛认为是对全球人类健康的紧迫威胁。细菌素是目前正在被考虑作为普通抗生素的真正替代品或补充物的抗菌肽。这些肽已得到大量研究,新的细菌素经常被报道,并且目前有几个关于这些肽的基因组数据库正在更新。尽管如此,据我们所知,还不存在一个能够用于测试和比较不同应用的细菌素实物库。合成生物学与无细胞蛋白质合成技术的快速发展为快速蛋白质生产提供了巨大潜力。基于不同数据库中成熟肽的氨基酸序列,我们构建了一个名为PARAGEN 1.0的细菌素基因库,其中包含无细胞肽合成所需的所有遗传元件。使用PARAGEN 1.0和一个用于无细胞蛋白质合成的商业试剂盒,我们生产了164种不同的细菌素。在合成的细菌素中,54%对至少一种测试指示菌株显示出抗菌活性,这些指示菌株包括代表常用实验室菌株、工业相关微生物和已知病原体的革兰氏阳性菌和革兰氏阴性菌。这个细菌素库代表了一个用于细菌素选择、生产和筛选的简化流程,以及一个针对几乎任何一类相关细菌的即用型抗菌剂库。

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