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Size Matters: Measurement of Capsule Diameter in Cryptococcus neoformans
Published on: February 27, 2018
Lipophilic dye staining of Cryptococcus neoformans extracellular vesicles and capsule
André Moraes Nicola1, Susana Frases, Arturo Casadevall
1Albert Einstein College of Medicine, Bronx, NY 10461, USA.
Abstract:
Cryptococcus neoformans is an encapsulated yeast that causes systemic mycosis in immunosuppressed individuals. Recent studies have determined that this fungus produces vesicles that are released to the extracellular environment both in vivo and in vitro. These vesicles contain assorted cargo that includes several molecules associated with virulence and implicated in host-pathogen interactions, such as capsular polysaccharides, laccase, urease, and other proteins. To date, visualization of extracellular vesicles has relied on transmission electron microscopy, a time-consuming technique. In this work we report the use of fluorescent membrane tracers to stain lipophilic structures in cryptococcal culture supernatants and capsules. Two dialkylcarbocyanine probes with different spectral characteristics were used to visualize purified vesicles by fluorescence microscopy and flow cytometry. Dual staining of vesicles with dialkylcarbocyanine and RNA-selective nucleic acid dyes suggested that a fraction of the vesicle population carried RNA. Use of these dyes to stain whole cells, however, was hampered by their possible direct binding to capsular polysaccharide. A fluorescent phospholipid was used as additional membrane tracer to stain whole cells, revealing punctate structures on the edge of the capsule which are consistent with vesicular trafficking. Lipophilic dyes provide new tools for the study of fungal extracellular vesicles and their content. The finding of hydrophobic regions in the capsule of C. neoformans adds to the growing evidence for a structurally complex structure composed of polysaccharide and nonpolysaccharide components.
Insights
Fluorescent dyes offer a faster way to study Cryptococcus neoformans vesicles, which carry virulence factors. These lipophilic dyes reveal new insights into fungal vesicle structure and content.
Area of Science:
- Mycology
- Cell Biology
- Microbiology
Background:
- Cryptococcus neoformans causes systemic mycosis, particularly in immunocompromised individuals.
- This fungus releases extracellular vesicles containing virulence factors like polysaccharides and enzymes.
- Current methods for visualizing these vesicles, such as transmission electron microscopy, are time-consuming.
Purpose of the Study:
- To develop and apply novel fluorescent membrane tracers for visualizing Cryptococcus neoformans extracellular vesicles.
- To investigate the presence of RNA within these vesicles.
- To explore the structural complexity of the C. neoformans capsule.
Main Methods:
- Utilized two dialkylcarbocyanine fluorescent probes to stain purified vesicles.
- Employed fluorescence microscopy and flow cytometry for vesicle visualization.
- Used RNA-selective nucleic acid dyes and a fluorescent phospholipid for dual staining and whole-cell imaging.
Main Results:
- Fluorescent membrane tracers successfully visualized purified C. neoformans vesicles.
- Dual staining indicated that some vesicles contain RNA.
- A fluorescent phospholipid revealed punctate structures on the capsule edge, suggesting vesicular trafficking.
- Lipophilic dyes provide effective tools for studying fungal extracellular vesicles.
Conclusions:
- Fluorescent lipophilic dyes offer efficient alternatives for studying fungal extracellular vesicles and their cargo.
- The C. neoformans capsule exhibits hydrophobic regions, indicating a complex composition beyond polysaccharides.
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