首页> 美国卫生研究院文献>Applied and Environmental Microbiology >The phagosome containing Legionella pneumophila within the protozoan Hartmannella vermiformis is surrounded by the rough endoplasmic reticulum.
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The phagosome containing Legionella pneumophila within the protozoan Hartmannella vermiformis is surrounded by the rough endoplasmic reticulum.

机译:原生动物Hartmannella vermiformis中含有嗜肺军团杆菌的吞噬体被粗糙的内质网包围。

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摘要

Legionella pneumophila is an intracellular parasite of protozoa and human phagocytes. To examine adaptation of this bacterium to parasitize protozoa, the sequence of events of the intracellular infection of the amoeba Hartmannella vermiformis was examined. The previously described uptake phenomenon of coiling phagocytosis by human monocytes was not detected. A 1 h postinfection with wild-type strain AA100, mitochondria were observed within the vicinity of the phagosome. At 2.5 h postinfection, numerous vesicles surrounded the phagosomes and mitochondria were in close proximity to the phagosome. At 5 h postinfection, the bacterium was surrounded by a ribosome-studded multilayer membrane. Bacterial multiplication was evident by 8 h postinfection, and the phagosome was surrounded by a ribosome-studded multilayer membrane until 15 h postinfection. The recruitment of organelles and formation of the ribosome-studded phagosome was defective in an isogenic attenuated mutant of L. pneumophila (strain AA101A) that failed to replicate within amoebae. At 20 h postinfection with wild-type strain AA100, numerous bacteria were present in the phagosome and ribosome were not detected around the phagosome. These data showed that, at the ultrastructural level, the intracellular infection of protozoa by L. pneumophila is highly similar to that of infection of macrophages. Immunocytochemical studies provided evidence that at 5 h postinfection the phagosome containing L. pneumophila acquired an abundant amount of the endoplasmic reticulum-specific protein (BiP). Similar to phagosomes containing heat-killed wild-type L. pneumophila, the BiP protein was not detectable in phagosomes containing the mutant strain AA101A. In addition to the absence of ribosomes and mitochondria, the BiP protein was not detected in the phagosomes at 20 h postinfection with wild-type L. pneumophila. The data indicated that the ability of L. pneumophila to establish the intracellular infection of amoebae is dependent on its capacity to reside and multiply within a phagosome surrounded by the rough endoplasmic reticulum. This compartment may constitute a rich source of nutrients for the bacteria and is probably recognized as cellular compartment. The remarkable similarity of the intracellular infections of macrophages and protozoa by L. pneumophila strongly supports the hypothesis that adaptation of the bacterium to the intracellular environment of protozoa may be the mechanism for its ability to adapt to the intracellular environment of human alveolar macrophages and causes pneumonia.
机译:肺炎军团菌是原生动物和人类吞噬细胞的胞内寄生虫。为了检查该细菌对寄生虫原虫的适应性,检查了变形虫Hartmannella vermiformis的细胞内感染事件的顺序。没有检测到先前描述的人类单核细胞盘绕吞噬作用的吸收现象。在吞噬体附近观察到野生型AA100菌株感染后1小时,线粒体。感染后2.5小时,吞噬小体周围有许多囊泡,线粒体与吞噬小体非常接近。感染后5小时,细菌被核糖体镶嵌的多层膜包围。感染后8 h细菌繁殖明显,吞噬体被核糖体簇结的多层膜包围,直至感染后15 h。细胞器的募集和形成核糖体的吞噬体的形成在嗜肺乳杆菌的等基因减毒突变体(菌株AA101A)中是缺陷的,该突变体无法在变形虫内复制。在用野生型AA100感染后20小时,吞噬体中存在大量细菌,并且在吞噬体周围未检测到核糖体。这些数据表明,在超微结构水平上,嗜肺乳杆菌对原生动物的细胞内感染与巨噬细胞的感染高度相似。免疫细胞化学研究提供了证据,表明感染后5小时,含有嗜肺乳杆菌的吞噬体获得了大量内质网特异性蛋白(BiP)。与含有热杀死的野生型肺炎支原体的吞噬体相似,在含有突变菌株AA101A的吞噬体中无法检测到BiP蛋白。除了不存在核糖体和线粒体外,在野生型肺炎支原体感染后20 h,吞噬体中未检测到BiP蛋白。数据表明,嗜肺乳杆菌建立变形虫细胞内感染的能力取决于其在被粗糙的内质网包围的吞噬体内生存和繁殖的能力。该隔室可以构成细菌营养的丰富来源,并且可能被认为是细胞隔室。肺炎衣原体感染巨噬细胞和原生动物的细胞内显着相似性强烈支持以下假设:细菌对原生动物细胞内环境的适应性可能是其适应人肺泡巨噬细胞细胞内环境并引起肺炎的机制。

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