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首页> 外文期刊>Journal of bacteriology >Characterization of Two Homologous Disulfide Bond Systems Involved in Virulence Factor Biogenesis in Uropathogenic Escherichia coli CFT073
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Characterization of Two Homologous Disulfide Bond Systems Involved in Virulence Factor Biogenesis in Uropathogenic Escherichia coli CFT073

机译:尿毒原性大肠杆菌CFT073中涉及毒力因子生物发生的两个同源二硫键系统的表征。

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摘要

Disulfide bond (DSB) formation is catalyzed by disulfide bond proteins and is critical for the proper folding and functioning of secreted and membrane-associated bacterial proteins. Uropathogenic Escherichia coli (UPEC) strains possess two paralogous disulfide bond systems: the well-characterized DsbAB system and the recently described DsbLI system. In the DsbAB system, the highly oxidizing DsbA protein introduces disulfide bonds into unfolded polypeptides by donating its redox-active disulfide and is in turn reoxidized by DsbB. DsbA has broad substrate specificity and reacts readily with reduced unfolded proteins entering the periplasm. The DsbLI system also comprises a functional redox pair; however, DsbL catalyzes the specific oxidative folding of the large periplasmic enzyme arylsulfate sulfotransferase (ASST). In this study, we characterized the DsbLI system of the prototypic UPEC strain CFT073 and examined the contributions of the DsbAB and DsbLI systems to the production of functional flagella as well as type 1 and P fimbriae. The DsbLI system was able to catalyze disulfide bond formation in several well-defined DsbA targets when provided in trans on a multicopy plasmid. In a mouse urinary tract infection model, the isogenic dsbAB deletion mutant of CFT073 was severely attenuated, while deletion of dsbLI or assT did not affect colonization.
机译:二硫键蛋白催化 D i s 硫化物 b ond(DSB)的形成,对于分泌物和膜的正确折叠和功能至关重要相关细菌蛋白。致病性大肠埃希菌(UPEC)菌株具有两个旁系的二硫键系统:特征明确的DsbAB系统和最近描述的DsbLI系统。在DsbAB系统中,高度氧化的DsbA蛋白通过提供其氧化还原活性二硫键将二硫键引入未折叠的多肽中,然后被DsbB再氧化。 DsbA具有广泛的底物特异性,并易于与进入周质的减少的未折叠蛋白反应。 DsbLI系统还包括一个功能性氧化还原对。但是,DsbL催化大型周质酶芳基硫酸盐磺基转移酶(ASST)的特定氧化折叠。在这项研究中,我们表征了原型UPEC菌株CFT073的DsbLI系统,并检查了DsbAB和DsbLI系统对功能性鞭毛以及1型和P型菌毛产生的贡献。当在多拷贝质粒上的 trans 中提供时,DsbLI系统能够催化几个明确定义的DsbA目标中的二硫键形成。在小鼠尿路感染模型中,CFT073的同基因 dsbAB 缺失突变体被严重减弱,而 dsbLI assT 的缺失并不影响定植。 。

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