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使用活荧光生物传感器对大型菌株库中的潜在细菌素生产者进行高通量检测。

High-throughput detection of potential bacteriocin producers in a large strain library using live fluorescent biosensors.

作者信息

Otto Sebastian J, Teichmann Laura, Fante Niklas, Crauwels Peter, Grünberger Alexander, Neddermann Tobias, Riedel Christian U

机构信息

Department of Biology, University of Ulm, Ulm, Germany.

NovaTaste Production GmbH, Holdorf, Germany.

出版信息

Front Bioeng Biotechnol. 2024 Jul 31;12:1405202. doi: 10.3389/fbioe.2024.1405202. eCollection 2024.

Abstract

The global increase in antibiotic resistances demands for additional efforts to identify novel antimicrobials such as bacteriocins. These antimicrobial peptides of bacterial origin are already used widely in food preservation and promising alternatives for antibiotics in animal feed and some clinical setting. Identification of novel antimicrobials is facilitated by appropriate high throughput screening (HTS) methods. Previously, we have described a rapid, simple and cost-efficient assay based on live biosensor bacteria for detection of antimicrobial compounds that act on membrane integrity using the ratiometric pH-dependent fluorescent protein pHluorin2 (pHin2). Here, we use these biosensors to develop an integrated pipeline for high-throughput identification of bacteriocin producers and their biosynthetic gene clusters. We extend the existing portfolio of biosensors by generating pHin2 expressing strains of , , , and methicillin-resistant . These strains were characterized, and control experiments were performed to assess heterogeneity of these biosensors in response to known bacteriocins and develop a robust HTS system. To allow detection of compounds that inhibit target bacteria by inhibiting growth without disturbing membrane integrity, the HTS system was extended with a growth-dependent readout. Using this HTS system, we screened supernatants of a total of 395 strains of a collection of lactic acid bacteria. After two rounds of screening 19 strains of the collection were identified that produced antimicrobial activity against and . Genomes of confirmed hits were sequenced and annotated. analysis revealed that the identified strains encode between one and six biosynthetic gene clusters (BGCs) for bacteriocins. Our results suggest that pHin2 biosensors provides a flexible, cheap, fast, robust and easy to handle HTS system for identification of potential bacteriocins and their BGCs in large strain collections.

摘要

全球抗生素耐药性的增加需要付出更多努力来鉴定新型抗菌剂,如细菌素。这些源自细菌的抗菌肽已广泛用于食品保鲜,并且在动物饲料和一些临床环境中是抗生素有前景的替代品。合适的高通量筛选(HTS)方法有助于新型抗菌剂的鉴定。此前,我们已经描述了一种基于活生物传感器细菌的快速、简单且经济高效的检测方法,用于检测使用比率pH依赖性荧光蛋白pHluorin2(pHin2)作用于膜完整性的抗菌化合物。在此,我们使用这些生物传感器开发了一个用于高通量鉴定细菌素生产者及其生物合成基因簇的综合流程。我们通过构建表达pHin2的金黄色葡萄球菌、表皮葡萄球菌、溶血葡萄球菌和耐甲氧西林金黄色葡萄球菌菌株,扩展了现有的生物传感器组合。对这些菌株进行了表征,并进行了对照实验,以评估这些生物传感器对已知细菌素反应的异质性,并开发一个强大的HTS系统。为了能够检测通过抑制生长而不干扰膜完整性来抑制目标细菌的化合物,HTS系统扩展了基于生长的读数。使用这个HTS系统,我们筛选了一组共395株乳酸菌的上清液。经过两轮筛选,鉴定出该组中有19株对金黄色葡萄球菌和大肠杆菌具有抗菌活性。对确认阳性菌株的基因组进行了测序和注释。分析表明,鉴定出的菌株编码1至6个细菌素生物合成基因簇(BGCs)。我们的结果表明,pHin2生物传感器为在大型菌株库中鉴定潜在细菌素及其BGCs提供了一个灵活、廉价、快速、强大且易于操作的HTS系统。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a5f2/11321961/16ae325a8285/fbioe-12-1405202-g001.jpg

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