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Analysis of outer membrane permeability of Pseudomonas aeruginosa and bactericidal activity of endolysins KZ144 and EL188 under high hydrostatic pressure

机译:高压下铜绿假单胞菌的外膜通透性及溶血素KZ144和EL188的杀菌活性

摘要

The parameters influencing outer membrane permeability of Pseudomonas aeruginosa PAO1 under high hydrostatic pressure were quantified and optimized, using fusion between a specific A1 gamma peptidoglycan-binding domain and green fluorescent protein (PBD-GFP). Based on the obtained data, optimal conditions were defined to assess the synergistic bactericidal action between high hydrostatic pressure and peptidoglycan hydrolysis by bacteriophage-encoded endolysins KZ144 and EL188. Under high hydrostatic pressure, both endolysins show similar inactivation of P. aeruginosa as the commonly used hen egg white lysozyme or slightly higher inactivation in the case of EL188 at 150 and 200 MPa. The partial contribution of pressure to the bacterial inactivation increases with higher pressure, while the partial contribution of the enzymes is maximal at the onset pressure of outer membrane permeabilization for the PBD-GFP protein (175 MPa). This study's results demonstrate the usefulness of this approach to determine optimal synergy for hurdle technology applications.
机译:使用特定的A1γ肽聚糖结合结构域和绿色荧光蛋白(PBD-GFP)之间的融合,定量和优化了在高静水压力下影响铜绿假单胞菌PAO1的外膜通透性的参数。根据获得的数据,确定了最佳条件,以评估高静水压力和通过噬菌体编码的内溶素KZ144和EL188进行的肽聚糖水解之间的协同杀菌作用。在高静水压力下,两种溶血素均表现出与铜绿假单胞菌相似的灭活活性,与常用的蛋清溶菌酶相似,或者在150和200 MPa的EL188情况下,灭活活性稍高。压力对细菌灭活的部分贡献随着压力的增加而增加,而在PBD-GFP蛋白的外膜透化开始压力(175 MPa)下,酶的部分贡献最大。这项研究的结果表明,这种方法对于确定跨栏技术应用的最佳协同效果很有用。

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