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Live-cell Video Microscopy of Fungal Pathogen Phagocytosis
Published on: January 9, 2013
Host cell membrane microdomains and fungal infection
Taiane N Souza1, Alessandro F Valdez1, Juliana Rizzo2
1Departamento de Microbiologia Geral, Instituto de Microbiologia Paulo de Góes, Universidade Federal do Rio de Janeiro, Rio de Janeiro, Brazil.
Abstract:
Lipid microdomains or lipid rafts are dynamic and tightly ordered regions of the plasma membrane. In mammalian cells, they are enriched in cholesterol, glycosphingolipids, Glycosylphosphatidylinositol-anchored and signalling-related proteins. Several studies have suggested that mammalian pattern recognition receptors are concentrated or recruited to lipid domains during host-pathogen association to enhance the effectiveness of host effector processes. However, pathogens have also evolved strategies to exploit these domains to invade cells and survive. In fungal organisms, a complex cell wall network usually mediates the first contact with the host cells. This cell wall may contain virulence factors that interfere with the host membrane microdomains dynamics, potentially impacting the infection outcome. Indeed, the microdomain disruption can dampen fungus-host cell adhesion, phagocytosis and cellular immune responses. Here, we provide an overview of regulatory strategies employed by pathogenic fungi to engage with and potentially subvert the lipid microdomains of host cells. TAKE AWAY: Lipid microdomains are ordered regions of the plasma membrane enriched in cholesterol, glycosphingolipids (GSL), GPI-anchored and signalling-related proteins. Pathogen recognition by host immune cells can involve lipid microdomain participation. During this process, these domains can coalesce in larger complexes recruiting receptors and signalling proteins, significantly increasing their signalling abilities. The antifungal innate immune response is mediated by the engagement of pathogen-associated molecular patterns to pattern recognition receptors (PRRs) at the plasma membrane of innate immune cells. Lipid microdomains can concentrate or recruit PRRs during host cell-fungi association through a multi-interactive mechanism. This association can enhance the effectiveness of host effector processes. However, virulence factors at the fungal cell surface and extracellular vesicles can re-assembly these domains, compromising the downstream signalling and favouring the disease development. Lipid microdomains are therefore very attractive targets for novel drugs to combat fungal infections.
Insights
Pathogenic fungi exploit host cell lipid microdomains for invasion and survival. Understanding these interactions offers new therapeutic targets for antifungal drugs to combat fungal infections.
Area of Science:
- Cell Biology
- Immunology
- Mycology
Background:
- Lipid microdomains (or lipid rafts) are ordered membrane regions rich in cholesterol, glycosphingolipids, and specific proteins.
- These domains play roles in host-pathogen interactions, immune cell signaling, and pathogen invasion.
Purpose of the Study:
- To review how pathogenic fungi engage with and potentially subvert host cell lipid microdomains.
- To highlight lipid microdomains as potential therapeutic targets for antifungal drug development.
Main Methods:
- Literature review of studies on lipid microdomains in host-fungus interactions.
- Analysis of fungal virulence factors and their impact on host membrane dynamics.
Main Results:
- Pathogenic fungi utilize virulence factors to manipulate host lipid microdomains, impacting adhesion, phagocytosis, and immune responses.
- Fungal strategies can disrupt microdomain function, favoring disease development.
Conclusions:
- Lipid microdomains are crucial in host-pathogen interactions, influencing immune recognition and fungal invasion.
- Targeting lipid microdomains presents a promising strategy for novel antifungal therapies.
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