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Survival of Tropheryma whipplei the Agent of Whipples Disease Requires Phagosome Acidification

机译:Whipple病的病因Whipleplei病的生存需要吞噬磷酸化

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摘要

Tropheryma whipplei was established as the agent of Whipple's disease in 2000, but the mechanisms by which it survives within host cells are still unknown. We show here that T. whipplei survives within HeLa cells by controlling the biogenesis of its phagosome. Indeed, T. whipplei colocalized with lysosome-associated membrane protein 1, a membrane marker of late endosomal and lysosomal compartments, but not with cathepsin D, a lysosomal hydrolase. This defect in phagosome maturation is specific to live organisms, since heat-killed bacilli colocalized with cathepsin D. In addition, T. whipplei survived within HeLa cells by adapting to acidic pH. The vacuoles containing T. whipplei were acidic (pH 4.7 ± 0.3) and acquired vacuolar ATPase, responsible for the acidic pH of late phagosomes. The treatment of HeLa cells with pH-neutralizing reagents, such as ammonium chloride, N-ethylmaleimide, bafilomycin A1, and chloroquine, increased the intravacuolar pH and promoted the killing of T. whipplei. The ability of T. whipplei to survive in an acidic environment and to interfere with phagosome-lysosome fusion is likely critical for its prolonged persistence in host cells during the course of Whipple's disease. Our results suggest that manipulating the intravacuolar pH may provide a new approach for the treatment of Whipple's disease.
机译:惠氏周围神经病是2000年建立的Whipple病病原体,但其在宿主细胞中存活的机制仍不清楚。我们在这里显示T.whipplei通过控制其吞噬体的生物发生而在HeLa细胞中生存。的确,鞭毛衣原体与溶酶体相关的膜蛋白1(晚期的内体和溶酶体区室的膜标志物)共定位,但与组织蛋白酶D(溶酶体水解酶)共定位。吞噬体成熟的这种缺陷是活生物体所特有的,因为热杀死的细菌与组织蛋白酶D共同定位。此外,鞭毛衣原体通过适应酸性pH在HeLa细胞中存活。含有惠氏鞭毛虫的液泡是酸性的(pH 4.7±0.3)并获得液泡ATPase,这是晚期吞噬体的酸性pH值。用pH中和试剂(例如氯化铵,N-乙基马来酰亚胺,巴氟霉素A1和氯喹)处理HeLa细胞,可以提高血管内pH值并促进对惠氏乳杆菌的杀死。鞭状鞭毛虫在酸性环境中生存并干扰吞噬体-溶酶体融合的能力可能是其在鞭毛病过程中在宿主细胞中持久存在的关键。我们的研究结果表明,调节血管内pH可能为治疗Whipple病提供一种新方法。

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