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一种新型大肠杆菌白细胞介素受体模拟蛋白的分子与结构特征

Molecular and Structural Characterization of a Novel Escherichia coli Interleukin Receptor Mimic Protein.

作者信息

Moriel Danilo G, Heras Begoña, Paxman Jason J, Lo Alvin W, Tan Lendl, Sullivan Matthew J, Dando Samantha J, Beatson Scott A, Ulett Glen C, Schembri Mark A

机构信息

Australian Infectious Diseases Research Centre, School of Chemistry and Molecular Biosciences, The University of Queensland, Brisbane, Australia.

La Trobe Institute for Molecular Science, La Trobe University, Melbourne, Australia

出版信息

mBio. 2016 Mar 15;7(2):e02046. doi: 10.1128/mBio.02046-15.

Abstract

UNLABELLED

Urinary tract infection (UTI) is a disease of extremely high incidence in both community and nosocomial settings. UTIs cause significant morbidity and mortality, with approximately 150 million cases globally per year. Uropathogenic Escherichia coli (UPEC) is the primary cause of UTI and is generally treated empirically. However, the rapidly increasing incidence of UTIs caused by multidrug-resistant UPEC strains has led to limited available treatment options and highlights the urgent need to develop alternative treatment and prevention strategies. In this study, we performed a comprehensive analysis to define the regulation, structure, function, and immunogenicity of recently identified UPEC vaccine candidate C1275 (here referred to as IrmA). We showed that the irmA gene is highly prevalent in UPEC, is cotranscribed with the biofilm-associated antigen 43 gene, and is regulated by the global oxidative stress response OxyR protein. Localization studies identified IrmA in the UPEC culture supernatant. We determined the structure of IrmA and showed that it adopts a unique domain-swapped dimer architecture. The dimeric structure of IrmA displays similarity to those of human cytokine receptors, including the interleukin-2 receptor (IL-2R), interleukin-4 receptor (IL-4R), and interleukin-10 receptor (IL-10R) binding domains, and we showed that purified IrmA can bind to their cognate cytokines. Finally, we showed that plasma from convalescent urosepsis patients contains high IrmA antibody titers, demonstrating the strong immunogenicity of IrmA. Taken together, our results indicate that IrmA may play an important role during UPEC infection.

IMPORTANCE

Uropathogenic E. coli (UPEC) is the primary cause of urinary tract infection (UTI), a disease of major significance to human health. Globally, the incidence of UPEC-mediated UTI is strongly associated with increasing antibiotic resistance, making this extremely common infection a major public health concern. In this report, we describe the regulatory, structural, functional, and immunogenic properties of a candidate UPEC vaccine antigen, IrmA. We demonstrate that IrmA is a small UPEC protein that forms a unique domain-swapped dimer with structural mimicry to several human cytokine receptors. We also show that IrmA binds to IL-2, IL-4, and IL-10, is strongly immunogenic in urosepsis patients, and is coexpressed with factors associated with biofilm formation. Overall, this work suggests a potential novel contribution for IrmA in UPEC infection.

摘要

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尿路感染(UTI)在社区和医院环境中都是发病率极高的疾病。UTI会导致显著的发病率和死亡率,全球每年约有1.5亿例病例。尿路致病性大肠杆菌(UPEC)是UTI的主要病因,通常采用经验性治疗。然而,多重耐药UPEC菌株引起的UTI发病率迅速上升,导致可用的治疗选择有限,并凸显了开发替代治疗和预防策略的迫切需求。在本研究中,我们进行了全面分析,以确定最近鉴定的UPEC疫苗候选物C1275(此处称为IrmA)的调控、结构、功能和免疫原性。我们发现irmA基因在UPEC中高度流行,与生物膜相关抗原43基因共转录,并受全局氧化应激反应OxyR蛋白调控。定位研究在UPEC培养上清液中鉴定出了IrmA。我们确定了IrmA的结构,并表明它采用独特的结构域交换二聚体结构。IrmA的二聚体结构与人类细胞因子受体的结构相似,包括白细胞介素-2受体(IL-2R)、白细胞介素-4受体(IL-4R)和白细胞介素-10受体(IL-10R)结合结构域,并且我们表明纯化的IrmA可以与其同源细胞因子结合。最后,我们表明康复期泌尿道脓毒症患者的血浆中IrmA抗体滴度很高,证明了IrmA具有很强的免疫原性。综上所述,我们的结果表明IrmA可能在UPEC感染过程中发挥重要作用。

重要性

尿路致病性大肠杆菌(UPEC)是尿路感染(UTI)的主要病因,UTI是对人类健康具有重要意义的疾病。在全球范围内,UPEC介导的UTI发病率与抗生素耐药性增加密切相关,使这种极为常见的感染成为一个重大的公共卫生问题。在本报告中,我们描述了一种候选UPEC疫苗抗原IrmA的调控、结构、功能和免疫原性特性。我们证明IrmA是一种小的UPEC蛋白,形成独特的结构域交换二聚体,其结构与几种人类细胞因子受体相似。我们还表明IrmA与IL-2、IL-4和IL-10结合,在泌尿道脓毒症患者中具有很强的免疫原性,并且与生物膜形成相关因子共表达。总体而言,这项工作表明IrmA在UPEC感染中可能有新的潜在作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ba66/4807369/bc2c24bcf93d/mbo0021627300001.jpg

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