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The Eng1 β-Glucanase Enhances Histoplasma Virulence by Reducing β-Glucan Exposure
Andrew L Garfoot1, Qian Shen1, Marcel Wüthrich2
1Departments of Microbiology and Microbial Infection and Immunity, Ohio State University, Columbus, Ohio, USA.
Unlabelled:
The fungal pathogen Histoplasma capsulatum parasitizes host phagocytes. To avoid antimicrobial immune responses, Histoplasma yeasts must minimize their detection by host receptors while simultaneously interacting with the phagocyte. Pathogenic Histoplasma yeast cells, but not avirulent mycelial cells, secrete the Eng1 protein, which is a member of the glycosylhydrolase 81 (GH81) family. We show that Histoplasma Eng1 is a glucanase that hydrolyzes β-(1,3)-glycosyl linkages but is not required for Histoplasma growth in vitro or for cell separation. However, Histoplasma yeasts lacking Eng1 function have attenuated virulence in vivo, particularly during the cell-mediated immunity stage. Histoplasma yeasts deficient for Eng1 show increased exposure of cell wall β-glucans, which results in enhanced binding to the Dectin-1 β-glucan receptor. Consistent with this, Eng1-deficient yeasts trigger increased tumor necrosis factor alpha (TNF-α) and interleukin-6 (IL-6) cytokine production from macrophages and dendritic cells. While not responsible for large-scale cell wall structure and function, the secreted Eng1 reduces levels of exposed β-glucans at the yeast cell wall, thereby diminishing potential recognition by Dectin-1 and proinflammatory cytokine production by phagocytes. In α-glucan-producing Histoplasma strains, Eng1 acts in concert with α-glucan to minimize β-glucan exposure: α-glucan provides a masking function by covering the β-glucan-rich cell wall, while Eng1 removes any remaining exposed β-glucans. Thus, Histoplasma Eng1 has evolved a specialized pathogenesis function to remove exposed β-glucans, thereby enhancing the ability of yeasts to escape detection by host phagocytes.
Importance:
The success of Histoplasma capsulatum as an intracellular pathogen results, in part, from an ability to minimize its detection by receptors on phagocytic cells of the immune system. In this study, we showed that Histoplasma pathogenic yeast cells, but not avirulent mycelia, secrete a β-glucanase, Eng1, which reduces recognition of fungal cell wall β-glucans. We demonstrated that the Eng1 β-glucanase promotes Histoplasma virulence by reducing levels of surface-exposed β-glucans on yeast cells, thereby enabling Histoplasma yeasts to escape detection by the host β-glucan receptor, Dectin-1. As a consequence, phagocyte recognition of Histoplasma yeasts is reduced, leading to less proinflammatory cytokine production by phagocytes and less control of Histoplasma infection in vivo Thus, Histoplasma yeasts express two mechanisms to avoid phagocyte detection: masking of cell wall β-glucans by α-glucan and enzymatic removal of exposed β-glucans by the Eng1 β-glucanase.
Insights
Histoplasma yeasts evade immune detection by using the Eng1 enzyme to remove exposed beta-glucans from their cell walls. This prevents recognition by host Dectin-1 receptors, reducing inflammation and promoting fungal survival.
Area of Science:
- Mycology
- Immunology
- Pathogenesis
Background:
- Histoplasma capsulatum is a fungal pathogen that infects host phagocytes.
- Pathogenic yeasts minimize host immune detection by reducing the visibility of cell wall components.
- The fungal protein Eng1, a glycosylhydrolase 81 (GH81) family member, is secreted by pathogenic Histoplasma yeasts.
Purpose of the Study:
- To investigate the role of Histoplasma Eng1 in fungal virulence and immune evasion.
- To determine how Eng1 affects the exposure of fungal cell wall beta-glucans.
- To elucidate the mechanism by which Eng1 contributes to Histoplasma pathogenesis.
Main Methods:
- Enzyme activity assays to characterize Eng1's glucanase function.
- Virulence studies in vivo to assess the impact of Eng1 deficiency.
- Analysis of cell wall beta-glucan exposure and Dectin-1 binding.
- Measurement of cytokine production (TNF-α, IL-6) by immune cells.
Main Results:
- Eng1 hydrolyzes beta-(1,3)-glycosyl linkages but is not essential for in vitro growth.
- Histoplasma yeasts lacking Eng1 exhibit reduced virulence in vivo.
- Eng1-deficient yeasts show increased exposure of cell wall beta-glucans, leading to enhanced Dectin-1 binding.
- Eng1-deficient yeasts trigger higher levels of pro-inflammatory cytokines (TNF-α, IL-6) from phagocytes.
Conclusions:
- Histoplasma Eng1 functions as a specialized virulence factor by reducing exposed beta-glucans on the yeast cell wall.
- Eng1 facilitates immune evasion by diminishing recognition by the host Dectin-1 receptor and subsequent inflammatory responses.
- In conjunction with alpha-glucan masking, Eng1's enzymatic activity is a key mechanism for Histoplasma to escape phagocyte detection and establish infection.

