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通过多表型高内涵筛选鉴定参与宿主细胞侵袭的伯纳特立克次氏体蛋白OmpA

Identification of OmpA, a Coxiella burnetii protein involved in host cell invasion, by multi-phenotypic high-content screening.

作者信息

Martinez Eric, Cantet Franck, Fava Laura, Norville Isobel, Bonazzi Matteo

机构信息

CNRS, UMR5236, CPBS, Montpellier, France; Université Montpellier 1, CPBS, Montpellier, France; Université Montpellier 2, CPBS, Montpellier, France.

Defence Science and Technology Laboratory, Porton Down, United Kingdom.

出版信息

PLoS Pathog. 2014 Mar 20;10(3):e1004013. doi: 10.1371/journal.ppat.1004013. eCollection 2014 Mar.

Abstract

Coxiella burnetii is the agent of the emerging zoonosis Q fever. This pathogen invades phagocytic and non-phagocytic cells and uses a Dot/Icm secretion system to co-opt the endocytic pathway for the biogenesis of an acidic parasitophorous vacuole where Coxiella replicates in large numbers. The study of the cell biology of Coxiella infections has been severely hampered by the obligate intracellular nature of this microbe, and Coxiella factors involved in host/pathogen interactions remain to date largely uncharacterized. Here we focus on the large-scale identification of Coxiella virulence determinants using transposon mutagenesis coupled to high-content multi-phenotypic screening. We have isolated over 3000 Coxiella mutants, 1082 of which have been sequenced, annotated and screened. We have identified bacterial factors that regulate key steps of Coxiella infections: 1) internalization within host cells, 2) vacuole biogenesis/intracellular replication, and 3) protection of infected cells from apoptosis. Among these, we have investigated the role of Dot/Icm core proteins, determined the role of candidate Coxiella Dot/Icm substrates previously identified in silico and identified additional factors that play a relevant role in Coxiella pathogenesis. Importantly, we have identified CBU_1260 (OmpA) as the first Coxiella invasin. Mutations in ompA strongly decreased Coxiella internalization and replication within host cells; OmpA-coated beads adhered to and were internalized by non-phagocytic cells and the ectopic expression of OmpA in E. coli triggered its internalization within cells. Importantly, Coxiella internalization was efficiently inhibited by pretreating host cells with purified OmpA or by incubating Coxiella with a specific anti-OmpA antibody prior to host cell infection, suggesting the presence of a cognate receptor at the surface of host cells. In summary, we have developed multi-phenotypic assays for the study of host/pathogen interactions. By applying our methods to Coxiella burnetii, we have identified the first Coxiella protein involved in host cell invasion.

摘要

伯氏考克斯体是新出现的人畜共患病Q热的病原体。这种病原体侵入吞噬细胞和非吞噬细胞,并利用Dot/Icm分泌系统来利用内吞途径形成酸性寄生泡,伯氏考克斯体在其中大量繁殖。由于这种微生物的专性胞内特性,对伯氏考克斯体感染的细胞生物学研究受到严重阻碍,迄今为止,参与宿主/病原体相互作用的伯氏考克斯体因子在很大程度上仍未得到表征。在这里,我们专注于利用转座子诱变结合高内涵多表型筛选对伯氏考克斯体毒力决定因素进行大规模鉴定。我们分离出了3000多个伯氏考克斯体突变体,其中1082个已进行测序、注释和筛选。我们鉴定出了调节伯氏考克斯体感染关键步骤的细菌因子:1)在宿主细胞内的内化;2)泡囊生物发生/胞内复制;3)保护受感染细胞免于凋亡。其中,我们研究了Dot/Icm核心蛋白的作用,确定了先前通过计算机模拟鉴定的候选伯氏考克斯体Dot/Icm底物的作用,并鉴定出了在伯氏考克斯体致病过程中起相关作用的其他因子。重要的是,我们将CBU_1260(OmpA)鉴定为首个伯氏考克斯体入侵素。ompA中的突变显著降低了伯氏考克斯体在宿主细胞内的内化和复制;包被有OmpA的珠子能黏附于非吞噬细胞并被其内化,在大肠杆菌中异位表达OmpA会引发其在细胞内的内化。重要的是,通过用纯化的OmpA预处理宿主细胞或在感染宿主细胞之前将伯氏考克斯体与特异性抗OmpA抗体孵育,可有效抑制伯氏考克斯体的内化,这表明宿主细胞表面存在同源受体。总之,我们开发了用于研究宿主/病原体相互作用的多表型分析方法。通过将我们的方法应用于伯氏考克斯体,我们鉴定出了首个参与宿主细胞入侵的伯氏考克斯体蛋白。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/41f4/3961360/38af5bc21b1d/ppat.1004013.g001.jpg

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