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伯纳特柯克斯体寄生泡的成熟需要细菌蛋白质合成,但不需要复制。

Maturation of the Coxiella burnetii parasitophorous vacuole requires bacterial protein synthesis but not replication.

作者信息

Howe Dale, Melnicáková Jana, Barák Imrich, Heinzen Robert A

机构信息

Department of Molecular Biology, University of Wyoming, Laramie, Wyoming, 82071-3944, USA.

出版信息

Cell Microbiol. 2003 Jul;5(7):469-80. doi: 10.1046/j.1462-5822.2003.00293.x.

Abstract

This study examined whether protein synthesis and replication are required for maturation and fusogenicity of the lysosomal-like, large and spacious parasitophorous vacuole (PV) of Coxiella burnetii, an obligate intracellular bacterium. Large and spacious PV with multiple non-replicating C. burnetii were observed by phase microscopy in Vero cells infected at a multiplicity of infection of ten and treated with a bacteriostatic concentration of nalidixic acid or carbenicillin, antimicrobics that inhibit DNA and cell wall biosynthesis respectively. Conversely, large and spacious PV were not observed in cells treated with a bacteriostatic concentration of the protein synthesis inhibitor chloramphenicol. Rather, fluorescence microscopy of individual cells revealed multiple, acidic PV harbouring a single organism tightly bounded by a LAMP-1 positive vacuolar membrane. These vacuoles homotypically fused to form a large and spacious PV upon removal of the drug. Chloramphenicol also inhibited trafficking of latex beads to large and spacious PV and caused mature PV to collapse. Collectively, these results demonstrate that C. burnetii protein synthesis, but not replication, is required for fusion between nascent C. burnetii PV and latex bead phagosomes, and also for formation and maintenance of large and spacious, replicative PV. However, transit of nascent PV through the endocytic pathway to ultimately acquire lysosomal markers appears to occur irrespective of Coxiella protein synthesis.

摘要

本研究检测了专性胞内细菌伯纳特柯克斯体(Coxiella burnetii)的类溶酶体、大而宽敞的寄生泡(PV)的成熟和融合是否需要蛋白质合成及复制。在感染复数为10且用抑菌浓度的萘啶酸或羧苄青霉素(分别抑制DNA和细胞壁生物合成的抗菌药物)处理的Vero细胞中,通过相差显微镜观察到含有多个不复制的伯纳特柯克斯体的大而宽敞的PV。相反,在用抑菌浓度的蛋白质合成抑制剂氯霉素处理的细胞中未观察到这样的大而宽敞的PV。相反,对单个细胞的荧光显微镜观察显示,多个酸性PV含有单个菌体,被LAMP - 1阳性的液泡膜紧密包裹。去除药物后,这些液泡同源融合形成一个大而宽敞的PV。氯霉素还抑制乳胶珠向大而宽敞的PV的转运,并导致成熟的PV塌陷。总体而言,这些结果表明,伯纳特柯克斯体的蛋白质合成而非复制,是新生的伯纳特柯克斯体PV与乳胶珠吞噬体融合所必需的,也是大而宽敞的、可复制的PV形成和维持所必需的。然而,新生PV通过内吞途径最终获得溶酶体标记物的过程似乎与柯克斯体蛋白质合成无关。

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