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首页> 外文期刊>Trends in Microbiology >Francisella tularensis travels a novel, twisted road within macrophages
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Francisella tularensis travels a novel, twisted road within macrophages

机译:Francisella tularensis在巨噬细胞中游走了一条新的曲折道路

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Francisella tularensis is a highly infectious intracellular bacterium that causes fulminating disease and is a potential bioweapon. Although entry of the bacteria into macrophages is mediated by novel asymmetric, spacious pseudopod loops, the nascent phagosome becomes tight fitting within seconds of formation. Biogenesis of the Francisella-containing phagosome (FCP) is arrested for 2-4h at a unique stage within the endosomal-lysosomal degradation pathway, followed by gradual bacterial escape into the cytosol, where the microbe proliferates. By contrast, other intracellular pathogens either proliferate within an idiosyncratic phagosome or escape within minutes into the cytoplasm to avoid degradation. Thus, trafficking of the FCP defies the dogma of classification of intracellular pathogens into vacuolar or cytosolic. The Francisella pathogenicity island and its transcriptional regulator MglA are essential for arresting biogenesis of the FCP. Despite sophisticated microbial strategies to arrest phagosome biogenesis within quiescent macrophages, trafficking of F. tularensis and other intracellular pathogens within interferon-gamma-activated macrophages is similar, in that the bacterial phagosomes fuse to lysosomes. The potential use of F. tularensis as a bioweapon has generated interest in the study of its molecular pathogenesis to identify targets for therapy, vaccination and rapid diagnosis.
机译:图拉弗朗西斯菌(Francisella tularensis)是一种高度传染性的细胞内细菌,可引起暴发性疾病,是一种潜在的生物武器。尽管细菌进入巨噬细胞的过程是由新型的不对称,宽敞的假足环所介导的,但新生的吞噬体在形成后的几秒钟内变得紧密。含弗氏杆菌的吞噬体(FCP)的生物发生在内体-溶酶体降解途径内的独特阶段被阻滞2-4h,然后细菌逐渐逸出进入胞质溶胶,微生物在那里扩散。相反,其他细胞内病原体要么在特异吞噬体中增殖,要么在数分钟内逃逸到细胞质中以避免降解。因此,FCP的运输违反了将细胞内病原体分类为液泡或胞质的教条。弗朗西斯菌致病岛及其转录调节因子MglA对于阻止FCP的生物发生至关重要。尽管采取了复杂的微生物策略来阻止静止巨噬细胞内的吞噬生物发生,但干扰素-γ激活的巨噬细胞内的土拉弗朗西斯菌和其他细胞内病原体的运输是相似的,因为细菌吞噬体融合了溶酶体。 Tularensis作为生物武器的潜在用途引起了人们对其分子发病机理的研究兴趣,以鉴定治疗,疫苗接种和快速诊断的靶标。

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