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The small GTPase rab4 is associated with early endosomes and regulates membrane recycling in fibroblasts. rab4 is present in epithelial cells; however, neither its localization nor function has been established in this cell type. We transfected Madin-Darby canine kidney cells with rab4, the GTPase-deficient mutant rab4Q67L, and the dominant negative mutant rab4S22N that poorly binds guanine nucleotides. Confocal immunofluorescence microscopy showed that rab4 was concentrated on internal structures at the lateral side of the cell around the nucleus. Quantitative immunoelectron microscopy revealed that the majority of rab4 was localized in the upper third of the cytoplasm. In cell surface binding experiments with (125)I-transferrin, we found a redistribution of transferrin receptor from the basolateral to the apical plasma membrane in cells expressing rab4 and rab4Q67L. After accumulation of transferrin at 16 degrees C in basolateral early endosomes, rab4 and rab4Q67L increased the amount of apically targeted transferrin receptor. A qualitatively similar effect was obtained in control cells treated with brefeldin A. The effects of brefeldin A and rab4 on apical targeting of transferrin receptor were not additive, suggesting that brefeldin A and rab4 may act in the same transport pathway from common endosomes.  相似文献   
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Human macrophages accumulate HIV-1 particles in MHC II compartments   总被引:10,自引:2,他引:8  
Macrophages are important targets for HIV-1 infection and harbor the virions in an as yet unidentified organelle. To determine the location of HIV-1 in these cells, an extensive analysis of primary human macrophages infected in vitro with HIV-1 was carried out by immuno-electron microscopy. Virus particles were found to accumulate in intracellular multivesicular compartments which were enriched in major histocompatibility complex class II molecules and CD63. These features are characteristics of major histocompatibility complex class II compartments where maturing class II molecules acquire their peptide cargo. The membrane-delimited, electron-dense virus particles of 100–110 nm diameter labeled strongly for HIV-1 p24 antigen, major histocompatibility complex class II molecules, CD63 and, to a lesser extent for HIV-1 gp120 envelope protein and Lamp 1. Our data suggest that virus particles may access the lumen of the major histocompatibility complex class II compartment by budding from the limiting membrane, thus acquiring proteins of this membrane such as class II and CD63. Viral assembly and budding would therefore occur in macrophages by a process similar to the formation of the internal vesicles in multivesicular bodies and at the same location. This could account for the particular content in lipids and proteins previously found in the membrane wrapping HIV particles. Our observations also suggest direct fusion of the virus containing major histocompatibility complex class II compartment with the plasma membrane, leading to massive release of viral particles into the extracellular medium.  相似文献   
3.
Some properties of toxin, isolated from extracts of axenically cultivated Entamoeba histolytica or excreted by intact amoebae, were investigated using a toxicity assay in microplates with monolayers of baby hamster kidney cells. Preparative isoelectric focusing showed that the highest cytotoxic activity was present in a fraction of antigen containing protein bands with an isoelectric point between 4.5 and 5. Activity of the toxin was stable between pH 4 and 10. Nonimmune rabbit serum and concanavalin A, coupled to Sepharose beads, were able to bind a large amount of toxin. Cytotoxicity of antigen was inhibited by specific immune IgG and by unknown factors in nonimmune serum with a molecular weight between 50,000 and 100,000. The toxin was inactivated by trypsin, but not by trypsin inhibitor. Its activity was thiol dependent. Serum also had a marked inhibitory effect on contact lysis of BHK cells induced by intact trophozoites. A considerable reduction of both contactdependent and toxin-induced Cytopathogenicity was observed when Diamond's TP-S-1 medium was used in the assay, in which the TP broth had been autoclaved. It is suggested that Entamoeba histolytica exocytozes toxin, which acts on adjacent cells during close contact.  相似文献   
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