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鉴定科氏立克次体基因组中保守的、促进细胞内生长的 4B 型分泌系统底物。

Identification of Type 4B Secretion System Substrates That Are Conserved among Coxiella burnetii Genomes and Promote Intracellular Growth.

机构信息

Coxiella Pathogenesis Section, Laboratory of Bacteriology, Rocky Mountain Laboratories, National Institute of Allergy and Infectious Diseases, National Institutes of Health, Hamilton, Montana, USA.

Innate Immunity and Pathogenesis Section, Laboratory of Persistent Viral Diseases, Rocky Mountain Laboratories, National Institute of Allergy and Infectious Diseases, National Institutes of Health, Hamilton, Montana, USA.

出版信息

Microbiol Spectr. 2023 Jun 15;11(3):e0069623. doi: 10.1128/spectrum.00696-23. Epub 2023 May 18.

Abstract

Coxiella burnetii is a Gram-negative pathogen that infects a variety of mammalian hosts. Infection of domesticated ewes can cause fetal abortion, whereas acute human infection normally manifests as the flu-like illness Q fever. Successful host infection requires replication of the pathogen within the lysosomal -containing vacuole (CCV). The bacterium encodes a type 4B secretion system (T4BSS) that delivers effector proteins into the host cell. Disruption of C. burnetii T4BSS effector export abrogates CCV biogenesis and bacterial replication. Over 150 C. burnetii T4BSS substrates have been designated often based on heterologous protein translocation by the Legionella pneumophila T4BSS. Cross-genome comparisons predict that many of these T4BSS substrates are truncated or absent in the acute-disease reference strain C. burnetii Nine Mile. This study investigated the function of 32 proteins conserved among diverse C. burnetii genomes that are reported to be T4BSS substrates. Despite being previously designated T4BSS substrates, many of the proteins were not translocated by C. burnetii when expressed fused to the CyaA or BlaM reporter tags. CRISPR interference (CRISPRi) indicated that of the validated C. burnetii T4BSS substrates, CBU0122, CBU1752, CBU1825, and CBU2007 promote C. burnetii replication in THP-1 cells and CCV biogenesis in Vero cells. When expressed in HeLa cells tagged at its C or N terminus with mCherry, CBU0122 localized to the CCV membrane and the mitochondria, respectively. Collectively, these data further define the repertoire of bona fide C. burnetii T4BSS substrates. Coxiella burnetii secretes effector proteins via a T4BSS that are required for successful infection. Over 150 C. burnetii proteins are reported to be T4BSS substrates and often by default considered putative effectors, but few have assigned functions. Many C. burnetii proteins were designated T4BSS substrates using heterologous secretion assays in L. pneumophila and/or have coding sequences that are absent or pseudogenized in clinically relevant C. burnetii strains. This study examined 32 previously reported T4BSS substrates that are conserved among C. burnetii genomes. Of the proteins tested that were previously designated T4BSS substrates using L. pneumophila, most were not exported by C. burnetii. Several T4BSS substrates that were validated in C. burnetii also promoted pathogen intracellular replication and one trafficked to late endosomes and the mitochondria in a manner suggestive of effector activity. This study identified several bona fide C. burnetii T4BSS substrates and further refined the methodological criteria for their designation.

摘要

贝氏考克斯氏体是一种革兰氏阴性病原体,可感染多种哺乳动物宿主。在家畜羊中感染可导致胎儿流产,而人类急性感染通常表现为类似流感的 Q 热。成功的宿主感染需要病原体在含有溶酶体的空泡(CCV)内复制。该细菌编码一种 4B 型分泌系统(T4BSS),可将效应蛋白输送到宿主细胞中。贝氏考克斯氏体 T4BSS 效应蛋白输出的破坏会阻止 CCV 的生物发生和细菌复制。已经根据嗜肺军团菌 T4BSS 的异源蛋白易位,对超过 150 种贝氏考克斯氏体 T4BSS 底物进行了经常指定。全基因组比较预测,在急性疾病参考株贝氏考克斯氏体九英里中,许多这些 T4BSS 底物被截断或缺失。本研究调查了在不同的贝氏考克斯氏体基因组中保守的 32 种蛋白质的功能,这些蛋白质据报道是 T4BSS 底物。尽管先前被指定为 T4BSS 底物,但当表达融合到 CyaA 或 BlaM 报告标签时,许多蛋白质并未被贝氏考克斯氏体易位。CRISPR 干扰(CRISPRi)表明,在经过验证的贝氏考克斯氏体 T4BSS 底物中,CBU0122、CBU1752、CBU1825 和 CBU2007 可促进 THP-1 细胞中的贝氏考克斯氏体复制和 Vero 细胞中的 CCV 生物发生。当用 mCherry 在其 C 或 N 末端标记在 HeLa 细胞中表达时,CBU0122 分别定位于 CCV 膜和线粒体。总的来说,这些数据进一步定义了真正的贝氏考克斯氏体 T4BSS 底物的范围。柯克斯氏体通过 T4BSS 分泌效应蛋白,这对于成功感染是必需的。据报道,超过 150 种贝氏考克斯氏体蛋白是 T4BSS 底物,通常默认被认为是假定的效应物,但很少有被赋予功能。许多贝氏考克斯氏体蛋白在嗜肺军团菌中使用异源分泌测定被指定为 T4BSS 底物,并且在临床上相关的贝氏考克斯氏体菌株中存在缺失或假基因化的编码序列。本研究检查了 32 种以前报道的在贝氏考克斯氏体基因组中保守的 T4BSS 底物。在使用嗜肺军团菌测试的被指定为 T4BSS 底物的蛋白质中,大多数未被贝氏考克斯氏体易位。在贝氏考克斯氏体中验证的几种 T4BSS 底物也促进了病原体的细胞内复制,其中一种以类似于效应物活性的方式向晚期内体和线粒体运输。本研究鉴定了几种真正的贝氏考克斯氏体 T4BSS 底物,并进一步完善了它们指定的方法标准。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ee79/10269450/da45f333c80c/spectrum.00696-23-f001.jpg

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