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Proteomic Analysis Reveals That Metabolic Flows Affect the Susceptibility of Aeromonas hydrophila to Antibiotics

机译:蛋白质组学分析表明,代谢流影响了疏水液对抗生素的易感性

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The overuse of antibiotics results in the development of antibiotic resistance and limits the useful life of these drugs in fighting bacteria, including Aeromonas hydrophila, a well-known opportunistic pathogen that causes serious infections in fish and other animals. In this study, we investigated the adaptive resistance mechanism in A. hydrophila by multiple proteomic methods. Dimethyl labeling and label-free methods were performed to compare the differential expression of proteins in response to various doses of oxytetracycline (OXY). The results point to the conclusions that, in response to OXY stress, translational processes increase the abundance of these proteins whereas largely central metabolic pathways decrease their abundance. To confirm our hypothesis, various exogenous metabolites were compounded with OXY, and the resulting survival capabilities were measured. Results show that 7 metabolites (malic acid, serine, methionine, etc.) significantly decreased the survival capabilities of A. hydrophila in the presence of OXY, whereas 4 metabolites (arginine, lysine, tyrosine, etc.) did the opposite. Further investigation suggests that a compound comprising exogenous metabolites in combination with various antibiotics could have a significant bactericidal effect and might come into widespread use, especially together with tetracycline antibiotics. These findings may provide new clues to the antimicrobial treatment of A. hydrophila infection.
机译:过度使用抗生素导致抗生素抗性的发展,并限制了这些药物在抗击细菌中的使用寿命,包括疏水机会,其中众所周知的机会理性病原体,导致鱼类和其他动物的严重感染。在这项研究中,我们通过多种蛋白质组学方法研究了A.疏水层的自适应抗性机制。进行二甲基标记和无标记的方法以比较蛋白质的差异表达响应于各种剂量的氧氧杂环素(氧)。结果指出,响应于氧胁迫,翻译过程增加了这些蛋白质的丰富,而大部分中央代谢途径降低了它们的丰度。为了确认我们的假设,将各种外源代谢物配混氧,并测量所得的存活能力。结果表明,7代谢物(苹果酸,丝氨酸,甲硫氨酸等)显着降低了氧气存在下A.疏水层的存活能力,而4代谢物(精氨酸,赖氨酸,酪氨酸等)与相反的相反。进一步的研究表明,包含与各种抗生素组合的外源代谢物的化合物可具有显着的杀菌效果,并且可能进入广泛使用,特别是与四环素抗生素一起。这些发现可以为A.疏水层感染的抗微生物治疗提供新的线索。

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