Pan Ying, Zheng Li-Bing, Mao Yong, Wang Jun, Lin Long-Shan, Su Yong-Quan, Li Yuan
State Key Laboratory of Marine Environmental Science, Xiamen University, 361005, China.
State Key Laboratory of Marine Environmental Science, Xiamen University, 361005, China.
Dev Comp Immunol. 2019 Mar;92:43-49. doi: 10.1016/j.dci.2018.10.008. Epub 2018 Oct 22.
Chemical drugs, such as antibiotics, were still important materials to prevent and cure diseases of aquatic organisms. However, antibiotics abuse do not only make the effects little, but also cause other bad problems, such as bacterial resistance and drug residues. Therefore, seeking the effective substitutes of antibiotics was an approach needed to be explored. Antibacterial peptides (AMPs) attracted more and more attention in the recent years. The parasitism and secondary bacterial invasion caused by ectroparasite Cryptocaryon irritans was a disaster to almost all host fish, including Larimichthys crocea. Reports indicated many AMPs played a key role in the whole parasitic infection cycle. Piscidin 5 like was a member of piscidin family. In the study, the antibacterial activity and mechanisms of piscidin 5 like from L.coreca (Lc-P5L) were detected. Liquid growth inhibition results showed recombinant Lc-P5L (rLc-P5L) had broad antibacterial spectrum and strong bactericidal activity. The bactericidal activity functioned in dose- and time-dependent manners. SEM (scanning electron microscope) observed the relatively detailed bactericidal process, rLc-P5L treatment resulted in a mass of bacteria piling together, appearing plenty of strange filaments and covering on the bacteria. Besides, S.aureus overgrowed plenty of granules, formed holes on the membrane of a few cells, and contents poured out from the holes. At the same time, antibacterial mechanisms were explored. After direct incubation with bacteria, western blot detected the apparently positive signal of rLc-P5L on bacteria; secondly, the incubation first with LPS (lipopolysaccharide) or LTA (lipoteichoic acid) significantly affect the binding of rLc-P5L to bacteria again, which indicated rLc-P5L could bind to bacteria through interaction with some PAMPs (pathogen-associated molecular patterns). In addition, rLc-P5L could interact with bacterial genome DNA by dose- and time-dependent means. In summary, rLc-P5L binded to bacteria surface through targeting to some PAMPs to damage membrane, and entered into cells to interact with genome DNA to disturb normal metabolism when it reached to some certain time and concentration thresholds, which were likely to be its pathway to exert antibacterial activity.
化学药物,如抗生素,仍然是预防和治疗水生生物疾病的重要物质。然而,抗生素的滥用不仅使其效果不佳,还会引发其他不良问题,如细菌耐药性和药物残留。因此,寻找抗生素的有效替代品是一个需要探索的途径。抗菌肽(AMPs)近年来越来越受到关注。由刺激隐核虫引起的寄生和继发性细菌感染对几乎所有宿主鱼类,包括大黄鱼,都是一场灾难。报道表明,许多抗菌肽在整个寄生虫感染周期中发挥着关键作用。类piscidin 5是piscidin家族的一员。在本研究中,检测了来自斜带髭鲷的类piscidin 5(Lc-P5L)的抗菌活性及其作用机制。液体生长抑制结果表明,重组Lc-P5L(rLc-P5L)具有广谱抗菌活性和较强的杀菌活性。杀菌活性呈剂量和时间依赖性。扫描电子显微镜(SEM)观察到了相对详细的杀菌过程,rLc-P5L处理导致大量细菌聚集在一起,出现大量奇怪的细丝并覆盖在细菌上。此外,金黄色葡萄球菌过度生长出大量颗粒,在一些细胞的膜上形成孔洞,内容物从孔洞中流出。同时,对抗菌机制进行了探索。rLc-P5L与细菌直接孵育后,蛋白质免疫印迹法检测到细菌上rLc-P5L明显的阳性信号;其次,先与脂多糖(LPS)或脂磷壁酸(LTA)孵育会显著影响rLc-P5L与细菌的再次结合,这表明rLc-P5L可通过与一些病原体相关分子模式(PAMPs)相互作用而与细菌结合。此外,rLc-P5L可通过剂量和时间依赖性方式与细菌基因组DNA相互作用。综上所述,rLc-P5L通过靶向一些PAMPs与细菌表面结合以损伤细胞膜,并在达到一定时间和浓度阈值时进入细胞与基因组DNA相互作用以干扰正常代谢,这可能是其发挥抗菌活性的途径。