Mycobacteria-containing phagosomes associate less annexins I, VI, VII and XI, but not II, concomitantly with a diminished phagolysosomal fusion.
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Summary
Findings add elements to the present knowledge of the phagosomal modifications that accompany the survival of intracellular pathogens, suggesting that annexins I, VI, VII, and XI play a secondary role inphagosomal fusion events while annexin II does not seem to be related to the mechanism of regulation of endolysosomal fusion.
- Type
- article
- Published
- 2003-01-01
- Cited by
- 14
- References
- 58
- OpenAlex
- https://openalex.org/W2000064419
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:2641790
Keywords
Phagosome, Phagocytosis, Intracellular, Microbiology, Cytosol
References
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- Transport of phagosomal components to an endosomal compartment.
- Annexin VI-binding proteins in brain. Interaction of annexin VI with a membrane skeletal protein, calspectin (brain spectrin or fodrin).
- Molecular characterization of phagosomes.
- Intracellular trafficking in Mycobacterium tuberculosis and Mycobacterium avium-infected macrophages.
- Annexin 3 is associated with cytoplasmic granules in neutrophils and monocytes and translocates to the plasma membrane in activated cells.
- Cloning and sequencing of the gene for alpha antigen from Mycobacterium avium and mapping of B-cell epitopes
- Evidence for inhibition of fusion of lysosomal and prelysosomal compartments with phagosomes in macrophages infected with pathogenic Mycobacterium avium
- Mycobacterial lipoarabinomannan inhibits gamma interferon-mediated activation of macrophages
- Annexin III translocates to the periphagosomal region when neutrophils ingest opsonized yeast.
- Lipoarabinomannan, a possible virulence factor involved in persistence of Mycobacterium tuberculosis within macrophages
- The annexins and exocytosis.
- Interaction of annexin VI with membranes: highly restricted dissipation of clustered phospholipids in membranes containing phosphatidylethanolamine.
- Change in the N-terminal domain conformation of annexin I that correlates with liposome aggregation is impaired by Ser-27 to Glu mutation that mimics phosphorylation.
- Annexins in the secretory pathway
- Mannosylated lipoarabinomannan antagonizes Mycobacterium tuberculosis-induced macrophage apoptosis by altering Ca+2-dependent cell signaling.
- Ca(2+)-dependent annexin self-association on membrane surfaces.
- Role of phosphatidylinositol 3-kinase and Rab5 effectors in phagosomal biogenesis and mycobacterial phagosome maturation arrest
- Regulation of the chromaffin granule aggregating activity of annexin I by phosphorylation.
- Effects of profilin-annexin I association on some properties of both profilin and annexin I: modification of the inhibitory activity of profilin on actin polymerization and inhibition of the self-association of annexin I and its interactions with liposomes.
Cited by
- Role of the lactoferrin-binding protein in pathogenesis of streptococcus uberis
- Discovery of mammalian genes that participate in virus infection
- Annexin–Actin Interactions
- The dynamic phagosomal proteome and the contribution of the endoplasmic reticulum
- Proteomic analysis of climatic keratopathy droplets.
- Annexin-Phospholipid Interactions. Functional Implications
- Extracellular-regulated kinase activation regulates replication of Mycobacterium avium intracellularly in primary human monocytes
- Antibiotics in Mycobacteria-Macrophage System and its Consequences at both Microorganism and Host Cell Level
- Analysis of phagosomal proteomes: From latex-bead to bacterial phagosomes
- Cell biology of mycobacterium tuberculosis phagosome.
- D.discoideum as a model for host-pathogen interaction: Phagosomal proteome of Legionella-infected cells
- Implication of lipid microdomains in regulation of protein trafficking and epithelial cell morphology
- Identification of a Novel Mycobacterial Gene Involved in the Synthesis of a Phenolic Glycolipid and its Role in the Prevention of Phagosome Maturation
- Genes mammaliens intervenant dans une infection
- An infektionen beteiligte Säugergene
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