首页> 美国卫生研究院文献>The Journal of Experimental Medicine >Ammonium chloride an inhibitor of phagosome-lysosome fusion in macrophages concurrently induces phagosome-endosome fusion and opens a novel pathway: studies of a pathogenic mycobacterium and a nonpathogenic yeast
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Ammonium chloride an inhibitor of phagosome-lysosome fusion in macrophages concurrently induces phagosome-endosome fusion and opens a novel pathway: studies of a pathogenic mycobacterium and a nonpathogenic yeast

机译:氯化铵是巨噬细胞吞噬体-溶酶体融合的抑制剂同时诱导吞噬体-内体融合并开辟了一条新途径:致病性分枝杆菌和非致病性酵母菌的研究

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摘要

The weak base ammonium chloride has been previously reported to inhibit lysosomal movements and phagosome-lysosome (Ph-L) fusion in cultured mouse macrophages (M phi), thus reducing delivery, to an intraphagosomal infection, of endocytosed solutes that have concentrated in secondary lysosomes. We have now addressed the question, whether NH4Cl might affect any direct interaction (if it exists) between such infection phagosomes and earlier, nonlysosomal compartments of the endocytic pathway, i.e., solute-containing endosomes. The phagosomes studied were formed after ingestion of the mouse pathogen Mycobacterium microti and the nonpathogenic yeast Saccharomyces cerevisiae; and the endosomes were formed after nonreceptor-mediated endocytosis of electronopaque and fluorescent soluble markers. By electron microscopy, survey of the cell profiles of M phi that had been treated with 10 mM NH4Cl so that Ph-L fusion was prevented, and that displayed many ferritin-labeled endosomes, revealed numerous examples of the fusion of electronlucent endosomes, revealed numerous examples of the fusion of electronlucent vesicles with phagosomes, whether containing M. microti bacilli or S. cerevisiae yeasts. Fusion was recognized by transfer of label and by morphological evidence of fusion in progress. The fusing vesicles were classed as endosomes, not NH4Cl-lysosomes, by their appearance and provenance, and because lysosome participation was excluded by the concurrent, NH4Cl- caused block of Ph-L fusion and associated lysosomal stasis. No evidence of such phagosome-endosome (Ph-E) fusion was observed in profiles from M phi treated with chloroquine, nor in those from normal, untreated M phi. NH4Cl-treated living M phi that had ingested yeasts at 37 degrees C, followed by endocytosis of lucifer yellow at 17 degrees C (to accumulate labeled endosomes and postpone label passing to lysosomes), were then restored to 37 degrees C. Fluorescence microscopy showed that as many as half of the yeast phagosomes (previously unlabeled) rapidly became colored. We inferred that this transfer was from endosomes (by Ph-E fusion) because Ph-L passage was blocked (by the NH4Cl). We conclude that NH4Cl induces Ph-E fusion at the same time as it suppressed Ph-L fusion. We discuss the mechanisms of these concurrent effects and suggest that they are independent; and we consider the implications of NH4Cl opening a direct route for endocytosed molecules to reach an intraphagosomal infection without involving lysosomes.
机译:以前已经报道过弱碱氯化铵可以抑制培养的小鼠巨噬细胞(M phi)中的溶酶体运动和吞噬体-溶酶体(Ph-L)融合,从而减少浓缩到次级溶酶体中的内吞溶质向吞噬体感染的传递。 。现在我们已经解决了一个问题,NH4Cl是否会影响这种感染吞噬体与胞吞途径的早期非溶酶体区室(即含有溶质的内体)之间的任何直接相互作用(如果存在)。吞噬小鼠病原体微量分枝杆菌和非致病性啤酒酵母后形成吞噬体。内体是在非受体介导的不透射电和荧光可溶性标记内吞作用后形成的。通过电子显微镜,对用10 mM NH4Cl处理过的M phi的细胞谱进行调查,以防止Ph-L融合,并显示出许多铁蛋白标记的内体,并揭示了许多电子透明内体融合的例子,并发现了许多例子。电子透明囊泡与吞噬体融合的例子,无论含有微分枝杆菌还是酿酒酵母。通过标记的转移和正在进行的融合的形态学证据可以识别融合。融合囊泡的外观和来源被归类为内体,而不是NH4Cl溶酶体,并且由于溶酶体参与被同时发生的NH4Cl引起的Ph-L融合阻滞和相关的溶酶体淤积所排除。在用氯喹处理的M phi和未经处理的正常M phi的谱中均未观察到这种吞噬体-内体(Ph-E)融合的证据。经过NH4Cl处理的活M phi,在37摄氏度下摄入了酵母,然后在17摄氏度下进行了荧光素黄的内吞作用(以积累标记的内体和推迟传递至溶酶体的标记),然后恢复到37摄氏度。荧光显微镜显示多达一半的酵母吞噬体(以前未标记)迅速变色。我们推断此转移来自内体(通过Ph-E融合),因为Ph-L通过被NH4Cl阻断。我们得出的结论是,NH4Cl在抑制Ph-L融合的同时诱导Ph-E融合。我们讨论了这些并发效应的机制,并建议它们是独立的。我们认为NH4Cl为胞吞分子达到吞噬体感染而无需溶酶体的直接途径打开的含义。

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