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Mitochondria-associated ER Membranes MAMs and Glycosphingolipid Enriched Microdomains GEMs: Isolation from Mouse Brain
Published on: March 4, 2013
Host membrane glycosphingolipids and lipid microdomains facilitate Histoplasma capsulatum internalisation by
Allan J Guimarães1,2, Mariana Duarte de Cerqueira3, Daniel Zamith-Miranda3
1Department of Microbiology and Parasitology, Biomedical Institute, Fluminense Federal University, Rio de Janeiro, Brazil.
Abstract:
Recognition and internalisation of intracellular pathogens by host cells is a multifactorial process, involving both stable and transient interactions. The plasticity of the host cell plasma membrane is fundamental in this infectious process. Here, the participation of macrophage lipid microdomains during adhesion and internalisation of the fungal pathogen Histoplasma capsulatum (Hc) was investigated. An increase in membrane lateral organisation, which is a characteristic of lipid microdomains, was observed during the first steps of Hc-macrophage interaction. Cholesterol enrichment in macrophage membranes around Hc contact regions and reduced levels of Hc-macrophage association after cholesterol removal also suggested the participation of lipid microdomains during Hc-macrophage interaction. Using optical tweezers to study cell-to-cell interactions, we showed that cholesterol depletion increased the time required for Hc adhesion. Additionally, fungal internalisation was significantly reduced under these conditions. Moreover, macrophages treated with the ceramide-glucosyltransferase inhibitor (P4r) and macrophages with altered ganglioside synthesis (from B4galnt1-/- mice) showed a deficient ability to interact with Hc. Coincubation of oligo-GM1 and treatment with Cholera toxin Subunit B, which recognises the ganglioside GM1, also reduced Hc association. Although purified GM1 did not alter Hc binding, treatment with P4 significantly increased the time required for Hc binding to macrophages. The content of CD18 was displaced from lipid microdomains in B4galnt1-/- macrophages. In addition, macrophages with reduced CD18 expression (CD18low ) were associated with Hc at levels similar to wild-type cells. Finally, CD11b and CD18 colocalised with GM1 during Hc-macrophage interaction. Our results indicate that lipid rafts and particularly complex gangliosides that reside in lipid rafts stabilise Hc-macrophage adhesion and mediate efficient internalisation during histoplasmosis.
Insights
Host cell lipid microdomains, especially gangliosides, are crucial for fungal pathogen Histoplasma capsulatum adhesion and internalisation. Cholesterol depletion and altered ganglioside synthesis impair this infectious process.
Area of Science:
- Immunology
- Cell Biology
- Mycology
Background:
- Host cell recognition and internalisation of intracellular pathogens involve complex host-pathogen interactions.
- The host cell plasma membrane's plasticity and organisation, particularly lipid microdomains, play a fundamental role in cellular processes, including infection.
Purpose of the Study:
- To investigate the role of macrophage lipid microdomains in the adhesion and internalisation of the fungal pathogen Histoplasma capsulatum (Hc).
- To elucidate the specific contributions of cholesterol and gangliosides within lipid microdomains to Hc-macrophage interactions.
Main Methods:
- Observation of membrane lateral organisation during Hc-macrophage interaction.
- Cholesterol depletion and its effect on Hc-macrophage association.
- Optical tweezers to measure cell-to-cell interaction forces and adhesion times.
- Inhibition of ceramide-glucosyltransferase and analysis of macrophages from B4galnt1 knockout mice.
- Treatment with ganglioside GM1 analogs and Cholera toxin Subunit B.
- Analysis of CD18 expression and localisation in lipid microdomains.
Main Results:
- Increased membrane lateral organisation observed during early Hc-macrophage interaction.
- Cholesterol depletion reduced Hc adhesion time and fungal internalisation.
- Inhibition of ganglioside synthesis or altered GM1 levels impaired Hc interaction.
- CD18 was displaced from lipid microdomains in B4galnt1 knockout macrophages.
- CD11b and CD18 colocalised with GM1 during Hc-macrophage interaction.
Conclusions:
- Lipid rafts and complex gangliosides within them are essential for stabilising Hc-macrophage adhesion.
- These lipid microdomain components mediate efficient internalisation of Hc, impacting histoplasmosis pathogenesis.
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