首页> 外文期刊>Antimicrobial agents and chemotherapy. >Outer membrane protein STM3031 (Ail/OmpX-like protein) plays a key role in the ceftriaxone resistance of Salmonella enterica serovar Typhimurium.
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Outer membrane protein STM3031 (Ail/OmpX-like protein) plays a key role in the ceftriaxone resistance of Salmonella enterica serovar Typhimurium.

机译:外膜蛋白STM3031(Ail / OmpX样蛋白)在肠炎沙门氏菌鼠伤寒沙门氏菌的头孢曲松耐药性中起关键作用。

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摘要

Previously, the putative outer membrane protein STM3031 has been correlated with ceftriaxone resistance in Salmonella enterica serovar Typhimurium. In this study, this protein was almost undetectable in the ceftriaxone-susceptible strain 01-4, but its levels were increased in 01-4 isogenic strains for which MICs were higher. The stm3031 gene deletion mutant, R200(Deltastm3031), was generated and showed >64-fold lower ceftriaxone resistance than R200, supporting a key role for STM3031 in ceftriaxone resistance. To investigate which outer membrane protein(s) was associated with resistance, the outer membrane protein profiles of 01-4, R200, and R200(Deltastm3031) were compared proteomically. Nine proteins were identified as altered. The expression levels of AcrA, TolC, STM3031, STM1530, VacJ, and Psd in R200 were increased; those of OmpC, OmpD, and OmpW were decreased. The expression levels of OmpD, OmpW, STM1530, VacJ, and Psd, but not those of OmpC, AcrA, and TolC, in R200(Deltastm3031) were returned to the levels in strain 01-4. Furthermore, the genes' mRNA levels correlated with their protein levels when the three strains were compared. The detection of higher AcrB levels, linked to higher acrB, acrD, and acrF mRNA levels, in strain R200 than in strains 01-4 and R200(Deltastm3031) suggests that AcrB, AcrD, and AcrF participate in ceftriaxone resistance. Taken together with the location of STM3031 in the outer membrane, these results suggest that STM3031 plays a key role in ceftriaxone resistance, probably by reducing permeability via a decreased porin OmpD level and enhancing export via increased AcrD efflux pump activity.
机译:以前,推定的外膜蛋白STM3031已与小肠沙门氏菌血清鼠伤寒中的头孢曲松耐药相关。在这项研究中,这种蛋白质在头孢曲松敏感性菌株01-4中几乎未检出,但在MIC较高的01-4等基因菌株中,其水平却升高了。产生了stm3031基因缺失突变体R200(Deltastm3031),其显示出的头孢曲松抗性比R200低64倍以上,这支持STM3031在头孢曲松抗性中的关键作用。为了研究哪些外膜蛋白与抗性相关,将蛋白质组学比较了01-4,R200和R200(Deltastm3031)的外膜蛋白谱。鉴定出九种蛋白质被改变。 Rcr中AcrA,TolC,STM3031,STM1530,VacJ和Psd的表达水平增加; OmpC,OmpD和OmpW的那些减少了。 R200(Deltastm3031)中的OmpD,OmpW,STM1530,VacJ和Psd的表达水平恢复到01-4菌株的水平,但OmpC,AcrA和TolC的表达水平未恢复。此外,当比较这三个菌株时,基因的mRNA水平与其蛋白质水平相关。与菌株01-4和R200(Deltastm3031)相比,在菌株R200中检测到较高的AcrB水平与较高的acrB,acrD和acrF mRNA水平有关(ΔΔstm3031),表明AcrB,AcrD和AcrF参与了头孢曲松耐药。连同STM3031在外膜中的位置一起,这些结果表明STM3031可能在头孢曲松耐药中起关键作用,可能是通过降低孔蛋白OmpD水平来降低渗透性,并通过增加AcrD外排泵的活性来增强出口。

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