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A Thermostable Salmonella Phage Endolysin, Lys68, with Broad Bactericidal Properties against Gram-Negative Pathogens in Presence of Weak Acids

机译:在弱酸存在下对革兰氏阴性病原体具有广泛杀菌特性的热稳定沙门氏菌噬菌体内溶素Lys68

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摘要

Resistance rates are increasing among several problematic Gram-negative pathogens, a fact that has encouraged the development of new antimicrobial agents. This paper characterizes a Salmonella phage endolysin (Lys68) and demonstrates its potential antimicrobial effectiveness when combined with organic acids towards Gram-negative pathogens. Biochemical characterization reveals that Lys68 is more active at pH 7.0, maintaining 76.7% of its activity when stored at 4°C for two months. Thermostability tests showed that Lys68 is only completely inactivated upon exposure to 100°C for 30 min, and circular dichroism analysis demonstrated the ability to refold into its original conformation upon thermal denaturation. It was shown that Lys68 is able to lyse a wide panel of Gram-negative bacteria (13 different species) in combination with the outer membrane permeabilizers EDTA, citric and malic acid. While the EDTA/Lys68 combination only inactivated Pseudomonas strains, the use of citric or malic acid broadened Lys68 antibacterial effect to other Gram-negative pathogens (lytic activity against 9 and 11 species, respectively). Particularly against Salmonella Typhimurium LT2, the combinatory effect of malic or citric acid with Lys68 led to approximately 3 to 5 log reductions in bacterial load/CFUs after 2 hours, respectively, and was also able to reduce stationary-phase cells and bacterial biofilms by approximately 1 log. The broad killing capacity of malic/citric acid-Lys68 is explained by the destabilization and major disruptions of the cell outer membrane integrity due to the acidity caused by the organic acids and a relatively high muralytic activity of Lys68 at low pH. Lys68 demonstrates good (thermo)stability properties that combined with different outer membrane permeabilizers, could become useful to combat Gram-negative pathogens in agricultural, food and medical industry.
机译:在几种有问题的革兰氏阴性病原体中,耐药率正在增加,这一事实鼓励了新型抗菌剂的开发。本文表征了沙门氏菌噬菌体溶素(Lys68),并证明了当与有机酸结合使用时,其对革兰氏阴性病原体的潜在抗菌作用。生化特征表明,Lys68在pH 7.0时更具活性,在4°C下保存两个月时,其活性保持76.7%。热稳定性测试表明,Lys68仅在暴露于100°C 30分钟后才完全失活,并且圆二色性分析表明,在热变性后,它可以重新折叠成其原始构象。结果表明,Lys68与外膜通透剂EDTA,柠檬酸和苹果酸联合使用,可以裂解多种革兰氏阴性细菌(13种不同菌种)。尽管EDTA / Lys68组合仅能灭活假单胞菌菌株,但柠檬酸或苹果酸的使用将Lys68的抗菌作用扩大到了其他革兰氏阴性病原体(分别针对9和11种细菌的分解活性)。特别是针对鼠伤寒沙门氏菌LT2,苹果酸或柠檬酸与Lys68的联合作用分别导致2小时后细菌载量/ CFU减少约3至5 log,并且还能够将固定相细胞和细菌生物膜减少约1个日志。苹果酸/柠檬酸-Lys68的广泛杀伤能力是由于有机酸引起的酸度和低pH值的Lys68相对较高的分解活性引起的细胞外膜完整性的失稳和主要破坏。 Lys68具有良好的(热)稳定性,可与不同的外膜透化剂结合使用,可用于对抗农业,食品和医疗行业中的革兰氏阴性病原体。

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