Crauwels Peter, Schäfer Leonie, Weixler Dominik, Bar Nadav S, Diep Dzung B, Riedel Christian U, Seibold Gerd M
Institute of Microbiology and Biotechnology, University of Ulm, Ulm, Germany.
Department of Chemical Engineering, Norwegian University of Science and Technology (NTNU), Trondheim, Norway.
Front Microbiol. 2018 Dec 11;9:3038. doi: 10.3389/fmicb.2018.03038. eCollection 2018.
Bacteriocins are antimicrobial peptides naturally produced by many bacteria and were shown to be effective against various pathogens including . is a food-borne pathogen that frequently causes disease outbreaks around the world with fatal outcomes in at-risk individuals. Thus, bacteriocins are a promising solution to prevent contaminations with and other microorganisms during food production and preservation. In the present study, we constructed EGD-e/pNZ-P-pHluorin, a strain that constitutively expresses the pH-sensitive fluorescent protein pHluorin, as a sensor strain to detect disruption of the pH gradient by the membrane-damaging activity of bacteriocins. The ratiometric fluorescence properties of pHluorin were validated both in crude extracts and permeabilized cells of this sensor strain. EGD-e/pNZ-P-pHluorin was used to assess membrane damaging activity of the bacteriocins nisin A and pediocin PA-1 and to determine the minimal concentrations required for full disruption of the pH gradient across the membrane. Moreover, the sensor strain proved useful to analyze the presence of compounds affecting membrane integrity in supernatants of a nisin Z-producing strain at different timepoints during growth. Supernatants of this strain that were active in disrupting the pH gradient across the membrane were also shown to inhibit growth of . In summary, the presented results suggest that the generated sensor strain is a convenient, fast and reliable tool to identify and characterize novel bacteriocins and other compounds that target membrane integrity.
细菌素是许多细菌天然产生的抗菌肽,已证明对包括……在内的各种病原体有效。……是一种食源性病原体,在世界各地经常引发疾病暴发,对高危个体可导致致命后果。因此,细菌素是预防食品生产和保存过程中被……及其他微生物污染的一种有前景的解决方案。在本研究中,我们构建了EGD - e/pNZ - P - pHluorin菌株,该菌株组成性表达对pH敏感的荧光蛋白pHluorin,作为一种传感器菌株,用于检测细菌素膜损伤活性对pH梯度的破坏。在该传感器菌株的粗提物和透化细胞中均验证了pHluorin的比率荧光特性。EGD - e/pNZ - P - pHluorin用于评估乳酸链球菌素A和片球菌素PA - 1的膜损伤活性,并确定完全破坏跨膜pH梯度所需的最低浓度。此外,该传感器菌株被证明可用于分析在生长过程中不同时间点产乳酸链球菌素Z菌株的上清液中影响膜完整性的化合物的存在情况。该菌株能破坏跨膜pH梯度的上清液也显示出抑制……生长的作用。总之,所呈现的结果表明,所构建的传感器菌株是一种方便、快速且可靠的工具,可用于鉴定和表征靶向膜完整性的新型细菌素及其他化合物。