Strasser J E, Newman S L, Ciraolo G M, Morris R E, Howell M L, Dean G E
Department of Molecular Genetics, Division of Infectious Diseases, University of Cincinnati College of Medicine, Cincinnati, OH 45267, USA.
J Immunol. 1999 May 15;162(10):6148-54.
Histoplasma capsulatum (Hc) maintains a phagosomal pH of about 6.5. This strategy allows Hc to obtain iron from transferrin, and minimize the activity of macrophage (Mo) lysosomal hydrolases. To determine the mechanism of pH regulation, we evaluated the function of the vacuolar ATPase (V-ATPase) in RAW264.7 Mo infected with Hc yeast or the nonpathogenic yeast Saccharomyces cerevisae (Sc). Incubation of Hc-infected Mo with bafilomycin, an inhibitor of the V-ATPase, did not affect the intracellular growth of Hc, nor did it affect the intraphagosomal pH. In contrast, upon addition of bafilomycin, phagosomes containing Sc rapidly changed their pH from 5 to 7. Hc-containing phagosomes had 5-fold less V-ATPase than Sc-containing phagosomes as quantified by immunoelectron microscopy. Furthermore, Hc-containing phagosomes inhibited phagolysosomal fusion as quantified by the presence of acid phosphatase, accumulation of LAMP2, and fusion with rhodamine B-isothiocyanate-labeled dextran-loaded lysosomes. Finally, in Hc-containing phagosomes, uptake of ferritin was equivalent to phagosomes containing Sc, indicating that Hc-containing phagosomes have full access to the early "bulk flow" endocytic pathway. Thus, Hc yeasts inhibit phagolysosomal fusion, inhibit accumulation of the V-ATPase in the phagosome, and actively acidify the phagosomal pH to 6.5 as part of their strategy to survive in Mo phagosomes.
荚膜组织胞浆菌(Hc)维持吞噬体pH值约为6.5。这种策略使Hc能够从转铁蛋白中获取铁,并使巨噬细胞(Mo)溶酶体水解酶的活性降至最低。为了确定pH调节机制,我们评估了液泡ATP酶(V-ATP酶)在感染Hc酵母或非致病性酵母酿酒酵母(Sc)的RAW264.7 Mo中的功能。用V-ATP酶抑制剂巴弗洛霉素孵育感染Hc的Mo,既不影响Hc的细胞内生长,也不影响吞噬体内pH值。相反,加入巴弗洛霉素后,含有Sc的吞噬体pH值迅速从5变为7。通过免疫电子显微镜定量分析,含有Hc的吞噬体的V-ATP酶比含有Sc的吞噬体少5倍。此外,通过酸性磷酸酶的存在、LAMP2的积累以及与异硫氰酸罗丹明B标记的葡聚糖负载溶酶体的融合来定量分析,含有Hc的吞噬体抑制吞噬溶酶体融合。最后,在含有Hc的吞噬体中,铁蛋白的摄取与含有Sc的吞噬体相当,这表明含有Hc的吞噬体可以完全进入早期的“整体流动”内吞途径。因此,Hc酵母抑制吞噬溶酶体融合,抑制V-ATP酶在吞噬体中的积累,并将吞噬体pH值主动酸化至6.5,作为其在Mo吞噬体中生存策略的一部分。