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首页> 外文期刊>Journal of proteome research >Proteomic analysis of the sarcosine-insoluble outer membrane fraction of Pseudomonas aeruginosa responding to ampicilin, kanamycin, and tetracycline resistance.
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Proteomic analysis of the sarcosine-insoluble outer membrane fraction of Pseudomonas aeruginosa responding to ampicilin, kanamycin, and tetracycline resistance.

机译:蛋白质组学分析铜绿假单胞菌对氨苄青霉素,卡那霉素和四环素耐药性产生的肌氨酸不溶性外膜部分。

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Nosocomial wound infections by antibiotic-resistant Pseudomonas aeruginosa strains have increasing importance in hospitals. Outer membrane proteins of the bacterium have strong influence on its resistance to antibiotics. In the current study, a parallel proteomic approach was applied to analysis of sarcosine-insoluble outer membrane fraction of P. aeruginosa responding to ampicilin, kanamycin and tetracycline resistances. Eleven differential proteins with 15 spots were determined and then identified by MALDI-TOF/MS, in which four with increased OprF, MexA, OmpH, and decreased hypothetical protein (NCBI No. 15599856), six with increased OprF, OmpH, hypothetical protein (NCBI No. 15599183) and decreased OprG, MexA, conserved hypothetical protein (NCBI No. 15600371), and eight with increased OprF, MexA, OprL, probable Omp (NCBI No. 15599856), probable secretion protein (NCBI No. 15600167), OprD and decreased OprG, conserved hypothetical protein (NCBI No. 15600371) responded to ampicilin, kanamycin, and tetracycline resistances, respectively. With the exception of OprF, the other differential proteins did not show the same behaviors against the three antibiotic resistances. Compared with our previous report on E. coli Omps responding to ampicilin and tetracycline resistances, which was only a protein difference in quality between the two antibiotics, P. aeruginosa showed significant diversity against the three antibiotics. Our findings might provide valuable data for an understanding of antibiotic-resistant difference between different species of bacteria. Meanwhile, these proteins shared by different bacteria or a bacterium against different antibiotics may provide universal targets for the development of new drugs that control antibiotic-resistant bacteria.
机译:耐药性铜绿假单胞菌菌株对医院伤口的感染在医院中越来越重要。细菌的外膜蛋白对其耐药性有很大影响。在当前的研究中,平行蛋白质组学方法被用于分析铜绿假单胞菌对氨苄青霉素,卡那霉素和四环素耐药性的肌氨酸不溶性外膜部分。确定了11个具有15个斑点的差异蛋白,然后通过MALDI-TOF / MS进行了鉴定,其中四个具有增加的OprF,MexA,OmpH和减少的假设蛋白质(NCBI编号15599856),六个具有增加的OprF,OmpH,假设的蛋白质( NCBI编号15599183)和OprG,MexA减少,保守的假设蛋白质(NCBI编号15600371),以及八个OprF,MexA,OprL,可能的Omp增多(NCBI编号15599856),可能的分泌蛋白(NCBI编号15600167),保守的假设蛋白(NCBI编号15600371)的OprD和降低的OprG分别对氨苄青霉素,卡那霉素和四环素耐药性有反应。除OprF外,其他差异蛋白对三种抗生素耐药性均未显示相同的行为。与我们先前关于氨苄青霉素和四环素耐药性的大肠杆菌Omps报道相比,这只是两种抗生素之间的蛋白质差异,铜绿假单胞菌对三种抗生素表现出显着的多样性。我们的发现可能为理解不同细菌之间的抗药性差异提供有价值的数据。同时,这些不同细菌共享的蛋白质或针对不同抗生素的细菌共享的蛋白质可能为控制抗生素抗性细菌的新药物的开发提供通用目标。

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