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AB5075 周质蛋白的研究进展及亚胺培南暴露的影响:一种蛋白质组学方法。

Insights into the Periplasmic Proteins of AB5075 and the Impact of Imipenem Exposure: A Proteomic Approach.

机构信息

Department of Public Health and Infectious Diseases, Sapienza University of Rome, 00185 Rome, Italy.

Dani Di Giò Foundation-Onlus, 00193 Rome, Italy.

出版信息

Int J Mol Sci. 2019 Jul 13;20(14):3451. doi: 10.3390/ijms20143451.

Abstract

Carbapenem-resistant strains cause life-threatening infections due to the lack of therapeutic options. Although the main mechanisms underlying antibiotic-resistance have been extensively studied, the general response to maintain bacterial viability under antibiotic exposure deserves to be fully investigated. Since the periplasmic space contains several proteins with crucial cellular functions, besides carbapenemases, we decided to study the periplasmic proteome of the multidrug-resistant (MDR) AB5075 strain, grown in the absence and presence of imipenem (IMP). Through the proteomic approach, 65 unique periplasmic proteins common in both growth conditions were identified: eight proteins involved in protein fate, response to oxidative stress, energy metabolism, antibiotic-resistance, were differentially expressed. Among them, ABUW_1746 and ABUW_2363 gene products presented the tetratricopeptide repeat motif, mediating protein-protein interactions. The expression switch of these proteins might determine specific protein interactions to better adapt to changing environmental conditions. ABUW_2868, encoding a heat shock protein likely involved in protection against oxidative stress, was upregulated in IMP-exposed bacteria. Accordingly, the addition of periplasmic proteins from cultured with IMP increased bacterial viability in an antioxidant activity assay. Overall, this study provides the first insights about the composition of the periplasmic proteins of a MDR strain, its biological response to IMP and suggests possible new targets to develop alternative antibiotic drugs.

摘要

由于缺乏治疗选择,耐碳青霉烯菌株会导致危及生命的感染。尽管抗生素耐药性的主要机制已经得到广泛研究,但在抗生素暴露下维持细菌生存能力的总体反应值得充分研究。由于周质空间中除了碳青霉烯酶外,还含有几种具有关键细胞功能的蛋白质,因此我们决定研究多药耐药(MDR)AB5075 菌株的周质蛋白质组,该菌株在没有和存在亚胺培南(IMP)的情况下生长。通过蛋白质组学方法,在两种生长条件下共鉴定出 65 种独特的周质蛋白质:涉及蛋白质命运、对氧化应激的反应、能量代谢、抗生素耐药性的 8 种蛋白质表达水平不同。其中,ABUW_1746 和 ABUW_2363 的基因产物具有四肽重复基序,介导蛋白质-蛋白质相互作用。这些蛋白质的表达开关可能决定了特定的蛋白质相互作用,以更好地适应不断变化的环境条件。ABUW_2868 编码一种热休克蛋白,可能参与抵御氧化应激,在暴露于 IMP 的细菌中上调。因此,在抗氧化活性测定中,添加来自经 IMP 培养的周质蛋白质可提高细菌的生存能力。总体而言,这项研究首次提供了关于 MDR 菌株周质蛋白质组成、其对 IMP 的生物学反应的见解,并提出了可能的新靶点,以开发替代抗生素药物。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1ada/6679007/c77df947641c/ijms-20-03451-g001.jpg

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