Streptococcus pyogenes bacteria modulate membrane traffic in human neutrophils and selectively inhibit azurophilic granule fusion with phagosomes. 2006

Leïla Staali, and Susanne Bauer, and Matthias Mörgelin, and Lars Björck, and Hans Tapper
Department of Clinical Sciences, Section for Clinical and Experimental Infectious Medicine, BMC, B14, Lund University, Tornavägen 10, SE-221 84 Lund, Sweden.

We recently reported that the human pathogen Streptococcus pyogenes of the M1 serotype survives and replicates intracellularly after being phagocytosed by human neutrophils. These data raised the possibility that the generation of reactive oxygen metabolites by neutrophils, and the release of microbicidal molecules from their azurophilic and specific granules into phagosomes, can be modulated by S. pyogenes bacteria expressing surface-associated M and/or M-like proteins. We now demonstrate, using flow cytometry, immunofluorescence microscopy and transmission electron microscopy, that live wild-type S. pyogenes, after internalization by human neutrophils, inhibits the fusion of azurophilic granules with phagosomes. In contrast, azurophilic granule-content is efficiently delivered to phagosomes containing bacteria not expressing M and/or M-like proteins. Also, when heat-killed wild-type bacteria are used as the phagocytic prey, fusion of azurophilic granules with phagosomes is observed. The inhibition caused by live wild-type S. pyogenes is specific for azurophilic granule-phagosome fusion, because the mobilization of specific granules and the production of reactive oxygen species are induced to a similar extent by all strains tested. In conclusion, our results demonstrate that viable S. pyogenes bacteria expressing M and M-like proteins selectively prevent the fusion of azurophilic granules with phagosomes.

UI MeSH Term Description Entries
D007150 Immunohistochemistry Histochemical localization of immunoreactive substances using labeled antibodies as reagents. Immunocytochemistry,Immunogold Techniques,Immunogold-Silver Techniques,Immunohistocytochemistry,Immunolabeling Techniques,Immunogold Technics,Immunogold-Silver Technics,Immunolabeling Technics,Immunogold Silver Technics,Immunogold Silver Techniques,Immunogold Technic,Immunogold Technique,Immunogold-Silver Technic,Immunogold-Silver Technique,Immunolabeling Technic,Immunolabeling Technique,Technic, Immunogold,Technic, Immunogold-Silver,Technic, Immunolabeling,Technics, Immunogold,Technics, Immunogold-Silver,Technics, Immunolabeling,Technique, Immunogold,Technique, Immunogold-Silver,Technique, Immunolabeling,Techniques, Immunogold,Techniques, Immunogold-Silver,Techniques, Immunolabeling
D007425 Intracellular Membranes Thin structures that encapsulate subcellular structures or ORGANELLES in EUKARYOTIC CELLS. They include a variety of membranes associated with the CELL NUCLEUS; the MITOCHONDRIA; the GOLGI APPARATUS; the ENDOPLASMIC RETICULUM; LYSOSOMES; PLASTIDS; and VACUOLES. Membranes, Intracellular,Intracellular Membrane,Membrane, Intracellular
D008561 Membrane Fusion The adherence and merging of cell membranes, intracellular membranes, or artificial membranes to each other or to viruses, parasites, or interstitial particles through a variety of chemical and physical processes. Fusion, Membrane,Fusions, Membrane,Membrane Fusions
D009504 Neutrophils Granular leukocytes having a nucleus with three to five lobes connected by slender threads of chromatin, and cytoplasm containing fine inconspicuous granules and stainable by neutral dyes. LE Cells,Leukocytes, Polymorphonuclear,Polymorphonuclear Leukocytes,Polymorphonuclear Neutrophils,Neutrophil Band Cells,Band Cell, Neutrophil,Cell, LE,LE Cell,Leukocyte, Polymorphonuclear,Neutrophil,Neutrophil Band Cell,Neutrophil, Polymorphonuclear,Polymorphonuclear Leukocyte,Polymorphonuclear Neutrophil
D010587 Phagocytosis The engulfing and degradation of microorganisms; other cells that are dead, dying, or pathogenic; and foreign particles by phagocytic cells (PHAGOCYTES). Phagocytoses
D010588 Phagosomes Membrane-bound cytoplasmic vesicles formed by invagination of phagocytized material. They fuse with lysosomes to form phagolysosomes in which the hydrolytic enzymes of the lysosome digest the phagocytized material. Phagolysosomes,Phagolysosome,Phagosome
D003571 Cytochalasin B A cytotoxic member of the CYTOCHALASINS. Phomin
D003594 Cytoplasmic Granules Condensed areas of cellular material that may be bounded by a membrane. Cytoplasmic Granule,Granule, Cytoplasmic,Granules, Cytoplasmic
D006801 Humans Members of the species Homo sapiens. Homo sapiens,Man (Taxonomy),Human,Man, Modern,Modern Man
D001399 Azure Stains PHENOTHIAZINES with an amino group at the 3-position that are green crystals or powder. They are used as biological stains. Giemsa Stain,Giemsa-11,Giemsa 11,Stain, Giemsa,Stains, Azure

Related Publications

Leïla Staali, and Susanne Bauer, and Matthias Mörgelin, and Lars Björck, and Hans Tapper
November 2010, The Journal of biological chemistry,
Leïla Staali, and Susanne Bauer, and Matthias Mörgelin, and Lars Björck, and Hans Tapper
January 2000, Journal of electron microscopy,
Leïla Staali, and Susanne Bauer, and Matthias Mörgelin, and Lars Björck, and Hans Tapper
September 1992, Cellular signalling,
Leïla Staali, and Susanne Bauer, and Matthias Mörgelin, and Lars Björck, and Hans Tapper
June 2006, Infection and immunity,
Leïla Staali, and Susanne Bauer, and Matthias Mörgelin, and Lars Björck, and Hans Tapper
July 1983, Biochemical and biophysical research communications,
Leïla Staali, and Susanne Bauer, and Matthias Mörgelin, and Lars Björck, and Hans Tapper
December 2023, Virulence,
Leïla Staali, and Susanne Bauer, and Matthias Mörgelin, and Lars Björck, and Hans Tapper
March 2002, Journal of cell science,
Leïla Staali, and Susanne Bauer, and Matthias Mörgelin, and Lars Björck, and Hans Tapper
September 1989, Archives of biochemistry and biophysics,
Leïla Staali, and Susanne Bauer, and Matthias Mörgelin, and Lars Björck, and Hans Tapper
February 1987, The Journal of physiology,
Leïla Staali, and Susanne Bauer, and Matthias Mörgelin, and Lars Björck, and Hans Tapper
December 2009, Traffic (Copenhagen, Denmark),
Copied contents to your clipboard!