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Coxiella burnetii Effector Proteins That Localize to the Parasitophorous Vacuole Membrane Promote Intracellular Replication

机译:本地化到寄生虫的液泡膜的伯氏柯氏杆菌效应蛋白促进细胞内复制。

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摘要

The intracellular bacterial pathogen Coxiella burnetii directs biogenesis of a parasitophorous vacuole (PV) that acquires host endolysosomal components. Formation of a PV that supports C. burnetii replication requires a Dot/Icm type 4B secretion system (T4BSS) that delivers bacterial effector proteins into the host cell cytosol. Thus, a subset of T4BSS effectors are presumed to direct PV biogenesis. Recently, the PV-localized effector protein CvpA was found to promote C. burnetii intracellular growth and PV expansion. We predict additional C. burnetii effectors localize to the PV membrane and regulate eukaryotic vesicle trafficking events that promote pathogen growth. To identify these vacuolar effector proteins, a list of predicted C. burnetii T4BSS substrates was compiled using bioinformatic criteria, such as the presence of eukaryote-like coiled-coil domains. Adenylate cyclase translocation assays revealed 13 proteins were secreted in a Dot/Icm-dependent fashion by C. burnetii during infection of human THP-1 macrophages. Four of the Dot/Icm substrates, termed Coxiella vacuolar protein B (CvpB), CvpC, CvpD, and CvpE, labeled the PV membrane and LAMP1-positive vesicles when ectopically expressed as fluorescently tagged fusion proteins. C. burnetii ΔcvpB, ΔcvpC, ΔcvpD, and ΔcvpE mutants exhibited significant defects in intracellular replication and PV formation. Genetic complementation of the ΔcvpD and ΔcvpE mutants rescued intracellular growth and PV generation, whereas the growth of C. burnetii ΔcvpB and ΔcvpC was rescued upon cohabitation with wild-type bacteria in a common PV. Collectively, these data indicate C. burnetii encodes multiple effector proteins that target the PV membrane and benefit pathogen replication in human macrophages.
机译:细胞内细菌病原体伯氏柯氏杆菌(Coxiella burnetii)指导寄生虫空泡(PV)的生物发生,该寄生虫空泡获得宿主的溶酶体成分。支持伯氏梭菌复制的PV的形成需要Dot / Icm 4B型分泌系统(T4BSS),该系统可将细菌效应蛋白输送到宿主细胞的细胞质中。因此,推定T4BSS效应子的一个子集可指导PV生物发生。最近,发现了PV定位的效应蛋白CvpA促进伯氏梭菌胞内生长和PV扩增。我们预测额外的伯氏梭菌效应子定位于PV膜并调节真核小泡贩运事件,促进病原体生长。为了鉴定这些液泡效应蛋白,使用生物信息学标准,例如真核生物样卷曲螺旋结构域的存在,汇编了预测的伯氏梭菌T4BSS底物列表。腺苷酸环化酶易位分析显示,在人类THP-1巨噬细胞感染过程中,伯氏梭菌以Dot / Icm依赖性方式分泌了13种蛋白质。当异位表达为荧光标记的融合蛋白时,称为Coxiella液泡蛋白B(CvpB),CvpC,CvpD和CvpE的Dot / Icm底物中的四种底物标记了PV膜和LAMP1阳性囊泡。伯氏梭菌ΔcvpB,ΔcvpC,ΔcvpD和ΔcvpE突变体在细胞内复制和PV形成中表现出明显的缺陷。 ΔcvpD和ΔcvpE突变体的遗传互补可以挽救细胞内的生长和PV的生成,而与野生型细菌在普通的PV中共栖,则可以挽救伯氏梭菌ΔcvpB和Δ cvpC 的生长。这些数据共同表示 C。 Burnetii 编码多种靶向PV膜并有益于人类巨噬细胞中病原体复制的效应蛋白。

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