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用于生产细菌噬菌体作为下一代疫苗的潜力。

Potential of Bacteriocins from for Producing Bacterial Ghosts as a Next Generation Vaccine.

机构信息

Gene Analysis Center, Gyeongnam National University of Science & Technology, Jinju 52725, Korea.

Department of Pharmaceutical Engineering, Gyeongnam National University of Science and Technology, Jinju 52725, Korea.

出版信息

Toxins (Basel). 2020 Jul 1;12(7):432. doi: 10.3390/toxins12070432.

Abstract

Bacteriocins are functionally diverse toxins produced by most microbes and are potent antimicrobial peptides (AMPs) for bacterial ghosts as next generation vaccines. Here, we first report that the AMPs secreted from effectively form ghosts of pathogenic bacteria and are identified as diverse bacteriocins, including novel ones. In detail, a cell-free supernatant from exhibited antimicrobial activities against pathogenic bacteria and was observed to effectively cause cellular lysis through pore formation in the bacterial membrane using scanning electron microscopy (SEM). The treatment of the cell-free supernatant with proteinase K or EDTA proved that the antimicrobial activity is mediated by AMPs, and the purification of AMPs using Sep-Pak columns indicated that the cell-free supernatant includes various amphipathic peptides responsible for the antimicrobial activity. Furthermore, the whole-genome sequencing of revealed that the strain has diverse bacteriocins, confirmed experimentally to function as AMPs, and among them are three novel bacteriocins, designated as Tan 1, Tan 2, and Tan 3. We also confirmed, using SEM, that Tan 2 effectively produces bacterial ghosts. Therefore, our data suggest that the bacteriocins from are potentially useful as a critical component for the preparation of bacterial ghosts.

摘要

细菌素是大多数微生物产生的具有多种功能的毒素,是细菌噬菌体的有效抗菌肽 (AMPs),可作为下一代疫苗。在这里,我们首次报道,从 分泌的 AMPs 有效地形成了致病性细菌的噬菌体,并被鉴定为多种细菌素,包括新型细菌素。具体而言,来自 的无细胞上清液表现出对致病性细菌的抗菌活性,并通过扫描电子显微镜 (SEM) 观察到通过在细菌膜中形成孔有效地导致细胞裂解。用蛋白酶 K 或 EDTA 处理无细胞上清液证明抗菌活性是由 AMPs 介导的,并且使用 Sep-Pak 柱纯化 AMPs 表明无细胞上清液包含各种负责抗菌活性的两亲肽。此外, 的全基因组测序表明该菌株具有多种细菌素,实验证实其具有 AMPs 功能,其中包括三种新型细菌素,分别命名为 Tan 1、Tan 2 和 Tan 3。我们还通过 SEM 证实 Tan 2 可有效地产生细菌噬菌体。因此,我们的数据表明, 产生的细菌素可能是制备细菌噬菌体的关键成分。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5dea/7404994/4899075968a4/toxins-12-00432-g001.jpg

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