← Explorer/Network

Macrophage Internalization of Fungal β-Glucans Is Not Necessary for Initiation of Related Inflammatory Responses

McCann F, Carmona E, Puri V +2 more2005Infection and ImmunityJournal Article
10.1128/iai.73.10.6340-6349.2005PubMedFree full text
Immune/Innate
Beta-GlucansIndoor Mold (Stachybotrys, Aspergillus, etc.)

Abstract

ABSTRACTCell wall β-glucans are highly conserved structural components of fungi that potently trigger inflammatory responses in an infected host. Identification of molecular mechanisms responsible for internalization and signaling of fungal β-glucans should enhance our understanding of innate immune responses to fungi. In this study, we demonstrated that internalization of fungal β-glucan particles requires actin polymerization but not participation of components of caveolar uptake mechanisms. Using fluorescence microscopy, we observed that uptake of 5-([4,6-dichlorotriazin-2-yl] amino)-fluorescein hydrochloride-Celite complex-labeledSaccharomyces cerevisiaeβ-glucan by RAW macrophages was substantially reduced in the presence of cytochalasin D, which antagonizes actin-mediated internalization pathways, but not by treatment with nystatin, which blocks caveolar uptake. Interestingly, β-glucan-induced NF-κB translocation, which is necessary for inflammatory activation, and tumor necrosis factor alpha production were both normal in the presence of cytochalasin D, despite defective internalization of β-glucan particles following actin disruption. Dectin-1, a major β-glucan receptor on macrophages, colocalized to phagocytic cups on macrophages and exhibited tyrosine phosphorylation after challenge with β-glucan particles. Dectin-1 localization and other membrane markers were not affected by treatment with cytochalasin D. Furthermore, dectin-1 receptors rather than Toll-like receptor 2 receptors were shown to be necessary for both efficient internalization of β-glucan particles and cytokine release in response to the fungal cell wall component.

Cited By (1)

  • The biological role of dectin-1 in immune responseInternational Reviews of Immunology · 2007

Related Papers

  • Elucidating the Pathogenesis of Spores from the Human Fungal PathogenCryptococcus neoformansInfection and Immunity · 2009 · 3 shared tags
  • The Pattern Recognition Receptor Dectin-1: From Fungi to MycobacteriaCurrent Drug Targets · 2008 · 3 shared tags
  • β‐glucan recognition by the innate immune systemImmunological Reviews · 2009 · 3 shared tags
  • Distinct patterns of dendritic cell cytokine release stimulated by beta-glucans and Toll-Like receptor agonists (98.33)The Journal of Immunology · 2009 · 3 shared tags
  • Dectin-1 and inflammation-associated gene transcription and expression in mouse lungs by a toxic (1,3)-β-d glucanArchives of Toxicology · 2009 · 3 shared tags
  • Bacteria, molds, and toxins in water-damaged building materialsApplied and Environmental Microbiology · 1997 · 3 shared tags