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Bio-energetics Investigation of Candida albicans Using Real-time Extracellular Flux Analysis
Published on: March 19, 2019
CotH3 mediates fungal invasion of host cells during mucormycosis
Abstract:
Angioinvasion is a hallmark of mucormycosis. Previously, we identified endothelial cell glucose-regulated protein 78 (GRP78) as a receptor for Mucorales that mediates host cell invasion. Here we determined that spore coat protein homologs (CotH) of Mucorales act as fungal ligands for GRP78. CotH proteins were widely present in Mucorales and absent from noninvasive pathogens. Heterologous expression of CotH3 and CotH2 in Saccharomyces cerevisiae conferred the ability to invade host cells via binding to GRP78. Homology modeling and computational docking studies indicated structurally compatible interactions between GRP78 and both CotH3 and CotH2. A mutant of Rhizopus oryzae, the most common cause of mucormycosis, with reduced CotH expression was impaired for invading and damaging endothelial cells and CHO cells overexpressing GRP78. This strain also exhibited reduced virulence in a diabetic ketoacidotic (DKA) mouse model of mucormycosis. Treatment with anti-CotH Abs abolished the ability of R. oryzae to invade host cells and protected DKA mice from mucormycosis. The presence of CotH in Mucorales explained the specific susceptibility of DKA patients, who have increased GRP78 levels, to mucormycosis. Together, these data indicate that CotH3 and CotH2 function as invasins that interact with host cell GRP78 to mediate pathogenic host-cell interactions and identify CotH as a promising therapeutic target for mucormycosis.
Insights
Spore coat proteins (CotH) from Mucorales fungi bind to host cell glucose-regulated protein 78 (GRP78), mediating invasion and mucormycosis. Targeting CotH offers a promising therapeutic strategy against this fungal infection.
Area of Science:
- Mycology
- Infectious Diseases
- Molecular Biology
Background:
- Angioinvasion is a key characteristic of mucormycosis.
- Endothelial cell glucose-regulated protein 78 (GRP78) was previously identified as a receptor for Mucorales, facilitating host cell invasion.
Purpose of the Study:
- To identify the fungal ligands responsible for Mucorales invasion mediated by GRP78.
- To investigate the role of spore coat protein homologs (CotH) in mucormycosis pathogenesis.
Main Methods:
- Identified CotH proteins in Mucorales.
- Expressed CotH in Saccharomyces cerevisiae for invasion assays.
- Utilized homology modeling and computational docking.
- Generated a Rhizopus oryzae mutant with reduced CotH expression.
- Tested anti-CotH antibodies in vitro and in a mouse model.
Main Results:
- CotH proteins are widely present in Mucorales but absent in noninvasive pathogens.
- Heterologous expression of CotH conferred GRP78-mediated host cell invasion.
- CotH demonstrated structurally compatible interactions with GRP78.
- Reduced CotH expression impaired R. oryzae invasion and virulence in a mouse model.
- Anti-CotH antibodies blocked invasion and protected mice.
Conclusions:
- CotH proteins function as invasins, interacting with host GRP78 to drive mucormycosis.
- The CotH-GRP78 interaction explains mucormycosis susceptibility in patients with elevated GRP78.
- CotH represents a potential therapeutic target for treating mucormycosis.
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