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首页> 外文期刊>Journal of bacteriology >Conserved ABC Transport System Regulated by the General Stress Response Pathways of Alpha- and Gammaproteobacteria
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Conserved ABC Transport System Regulated by the General Stress Response Pathways of Alpha- and Gammaproteobacteria

机译:保守的ABC运输系统,由α-和γ-变形杆菌的一般应激反应途径调控

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摘要

Brucella abortus σE1 is an EcfG family sigma factor that regulates the transcription of dozens of genes in response to diverse stress conditions and is required for maintenance of chronic infection in a mouse model. A putative ATP-binding cassette transporter operon, bab1_0223-bab1_0226, is among the most highly activated gene sets in the σE1 regulon. The proteins encoded by the operon resemble quaternary ammonium-compatible solute importers but are most similar in sequence to the broadly conserved YehZYXW system, which remains largely uncharacterized. Transcription of yehZYXW is activated by the general stress sigma factor σS in Enterobacteriaceae, which suggests a functional role for this transport system in bacterial stress response across the classes Alphaproteobacteria and Gammaproteobacteria. We present evidence that B. abortus YehZYXW does not function as an importer of known compatible solutes under physiological conditions and does not contribute to the virulence defect of a σE1-null strain. The sole in vitro phenotype associated with genetic disruption of this putative transport system is reduced growth in the presence of high Li+ ion concentrations. A crystal structure of B. abortus YehZ revealed a class II periplasmic binding protein fold with significant structural homology to Archaeoglobus fulgidus ProX, which binds glycine betaine. However, the structure of the YehZ ligand-binding pocket is incompatible with high-affinity binding to glycine betaine. This is consistent with weak measured binding of YehZ to glycine betaine and related compatible solutes. We conclude that YehZYXW is a conserved, stress-regulated transport system that is phylogenetically and functionally distinct from quaternary ammonium-compatible solute importers.
机译:流产布鲁氏菌σ E1 是EcfG家族的sigma因子,可调节数十种基因的转录,以应对各种应激条件,并且是维持小鼠模型中慢性感染所必需的。推测的ATP结合盒转运蛋白操纵子 bab1_0223-bab1_0226 是σ E1 调节子中活化程度最高的基因组之一。操纵子编码的蛋白质类似于季铵盐兼容的溶质导入物,但是其序列与广泛保存的YehZYXW系统在序列上最为相似,该系统在很大程度上仍未表征。 yehZYXW 的转录被肠杆菌科中的一般应力sigma因子σ S 激活,这提示该转运系统在细菌变形反应中属于Alphaproteobacteria和Gammaproteobacteria类。我们提供的证据表明,流产芽孢杆菌YehZYXW不能在生理条件下充当已知相容溶质的进口者,并且不会造成σ E1 -null菌株的毒力缺陷。在高Li + 离子存在下,与这种推定运输系统的遗传破坏有关的唯一体外表型是生长减少。流产芽孢杆菌YehZ的晶体结构显示II类周质结合蛋白折叠,其与结合甘氨酸甜菜碱的富古细菌ProX具有显着的结构同源性。然而,YehZ配体结合袋的结构与与甘氨酸甜菜碱的高亲和力结合不相容。这与YehZ与甘氨酸甜菜碱及相关相容性溶质的结合力弱有关。我们得出的结论是,YehZYXW是一种保守的,受压力调节的运输系统,在系统发育和功能上与季铵兼容的溶质进口商不同。

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