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Live-cell Video Microscopy of Fungal Pathogen Phagocytosis
Published on: January 9, 2013
Recognition of yeast by murine macrophages requires mannan but not glucan
Sabine Keppler-Ross1, Lois Douglas, James B Konopka
1Department of Biochemistry and Cell Biology, Stony Brook University, NY 11794, USA.
Abstract:
The first barrier against infection by Candida albicans involves fungal recognition and destruction by phagocytic cells of the innate immune system. It is well established that interactions between different phagocyte receptors and components of the fungal cell wall trigger phagocytosis and subsequent immune responses, but the fungal ligands mediating the initial stage of recognition have not been identified. Here, we describe a novel assay for fungal recognition and uptake by macrophages which monitors this early recognition step independently of other downstream events of phagocytosis. To analyze infection in live macrophages, we validated the neutrality of a codon-optimized red fluorescent protein (yEmRFP) biomarker in C. albicans; growth, hyphal formation, and virulence in infected mice and macrophages were unaffected by yEmRFP production. This permitted a new approach for studying phagocytosis by carrying out competition assays between red and green fluorescent yeast cells to measure the efficiency of yeast uptake by murine macrophages as a function of dimorphism or cell wall defects. These competition experiments demonstrate that, given a choice, macrophages display strong preferences for phagocytosis based on genus, species, and morphology. Candida glabrata and Saccharomyces cerevisiae are taken up by J774 macrophage cells more rapidly than C. albicans, and C. albicans yeast cells are favored over hyphal cells. Significantly, these preferences are mannan dependent. Mutations that affect mannan, but not those that affect glucan or chitin, reduce the uptake of yeast challenged with wild-type competitors by both J774 and primary murine macrophages. These results suggest that mannose side chains or mannosylated proteins are the ligands recognized by murine macrophages prior to fungal uptake.
Insights
Macrophages prefer to engulf certain fungi, with mannan on the fungal cell wall being key for recognition. This finding advances understanding of innate immunity against fungal infections like Candida albicans.
Area of Science:
- Immunology
- Microbiology
Background:
- Phagocytic cells are crucial for innate immunity against fungal pathogens.
- Fungal cell wall components interact with phagocyte receptors to trigger immune responses.
- The specific fungal ligands initiating this recognition remain largely unidentified.
Purpose of the Study:
- To develop a novel assay for studying early fungal recognition and uptake by macrophages.
- To identify the fungal ligands responsible for initial recognition by phagocytes.
- To investigate macrophage phagocytosis preferences based on fungal species and morphology.
Main Methods:
- Developed a new assay using fluorescently tagged Candida albicans (yEmRFP) to monitor fungal recognition independently of downstream events.
- Conducted competition assays between differently fluorescent yeast cells to measure phagocytosis efficiency.
- Utilized mutant strains with defects in cell wall components (mannan, glucan, chitin) to assess their role in recognition.
Main Results:
- Macrophages demonstrated distinct preferences for phagocytosing different fungal species and morphologies.
- Murine macrophages showed higher uptake rates for Candida glabrata and Saccharomyces cerevisiae compared to Candida albicans.
- Candida albicans yeast cells were phagocytosed more readily than hyphal forms.
- These preferences were dependent on mannan, a component of the fungal cell wall; mutations affecting mannan significantly reduced yeast uptake.
Conclusions:
- Mannan-containing structures on the fungal cell surface are critical ligands for macrophage recognition and phagocytosis.
- Mannose side chains or mannosylated proteins are likely recognized by murine macrophages during the initial stages of fungal interaction.
- This study provides a new tool and insights into the molecular mechanisms of fungal recognition by the innate immune system.

