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Potential role of phospholipases in virulence and fungal pathogenesis
1Center for Medical Mycology, Mycology Reference Laboratory, University Hospitals of Cleveland, and Department of Dermatology, Case Western Reserve University, Cleveland, Ohio 44106-5028, USA. mag3@po.cwru.edu
Abstract:
Microbial pathogens use a number of genetic strategies to invade the host and cause infection. These common themes are found throughout microbial systems. Secretion of enzymes, such as phospholipase, has been proposed as one of these themes that are used by bacteria, parasites, and pathogenic fungi. The role of extracellular phospholipase as a potential virulence factor in pathogenic fungi, including Candida albicans, Cryptococcus neoformans, and Aspergillus, has gained credence recently. In this review, data implicating phospholipase as a virulence factor in C. albicans, Candida glabrata, C. neoformans, and A. fumigatus are presented. A detailed description of the molecular and biochemical approaches used to more definitively delineate the role of phospholipase in the virulence of C. albicans is also covered. These approaches resulted in cloning of three genes encoding candidal phospholipases (caPLP1, caPLB2, and PLD). By using targeted gene disruption, C. albicans null mutants that failed to secrete phospholipase B, encoded by caPLB1, were constructed. When these isogenic strain pairs were tested in two clinically relevant murine models of candidiasis, deletion of caPLB1 was shown to lead to attenuation of candidal virulence. Importantly, immunogold electron microscopy studies showed that C. albicans secretes this enzyme during the infectious process. These data indicate that phospholipase B is essential for candidal virulence. Although the mechanism(s) through which phospholipase modulates fungal virulence is still under investigations, early data suggest that direct host cell damage and lysis are the main mechanisms contributing to fungal virulence. Since the importance of phospholipases in fungal virulence is already known, the next challenge will be to utilize these lytic enzymes as therapeutic and diagnostic targets.
Insights
Pathogenic fungi like Candida albicans use phospholipase enzymes to cause infection. Disrupting the phospholipase B gene significantly reduced fungal virulence in animal models, highlighting its role in candidiasis.
Area of Science:
- Mycology
- Pathogen Biology
- Molecular Microbiology
Background:
- Microbial pathogens employ diverse genetic strategies for host invasion and infection.
- Extracellular enzymes, particularly phospholipases, are increasingly recognized as potential virulence factors in pathogenic fungi.
- Candida albicans, Cryptococcus neoformans, and Aspergillus species are significant fungal pathogens.
Purpose of the Study:
- To review and present data implicating phospholipase as a virulence factor in pathogenic fungi, including Candida albicans, Candida glabrata, Cryptococcus neoformans, and Aspergillus fumigatus.
- To detail molecular and biochemical approaches for understanding the role of phospholipase in Candida albicans virulence.
- To investigate the essentiality of phospholipase B in candidal virulence.
Main Methods:
- Cloning of three genes encoding candidal phospholipases (caPLP1, caPLB2, and PLD).
- Targeted gene disruption to create Candida albicans null mutants lacking phospholipase B secretion (caPLB1).
- Virulence testing of isogenic strain pairs in murine models of candidiasis and immunogold electron microscopy.
Main Results:
- Deletion of the caPLB1 gene led to the attenuation of candidal virulence in murine models.
- Candida albicans was shown to secrete phospholipase B during the infectious process.
- Phospholipase B was identified as essential for candidal virulence.
Conclusions:
- Phospholipase B is a critical virulence factor for Candida albicans.
- Direct host cell damage and lysis are suggested as primary mechanisms by which phospholipase contributes to fungal virulence.
- Phospholipases represent potential therapeutic and diagnostic targets for fungal infections.