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Published on: March 4, 2017
Functional Characterization of Secreted Aspartyl Proteases in Candida parapsilosis
Dhirendra Kumar Singh1, Tibor Németh1, Alexandra Papp2
1Department of Microbiology, University of Szeged, Szeged, Hungary.
Abstract:
Candida parapsilosis is an emerging non-albicans Candida species that largely affects low-birth-weight infants and immunocompromised patients. Fungal pathogenesis is promoted by the dynamic expression of diverse virulence factors, with secreted proteolytic enzymes being linked to the establishment and progression of disease. Although secreted aspartyl proteases (Sap) are critical for Candida albicans pathogenicity, their role in C. parapsilosis is poorly elucidated. In the present study, we aimed to examine the contribution of C. parapsilosisSAPP genes SAPP1, SAPP2, and SAPP3 to the virulence of the species. Our results indicate that SAPP1 and SAPP2, but not SAPP3, influence adhesion, host cell damage, phagosome-lysosome maturation, phagocytosis, killing capacity, and cytokine secretion by human peripheral blood-derived macrophages. Purified Sapp1p and Sapp2p were also shown to efficiently cleave host complement component 3b (C3b) and C4b proteins and complement regulator factor H. Additionally, Sapp2p was able to cleave factor H-related protein 5 (FHR-5). Altogether, these data demonstrate the diverse, significant contributions that SAPP1 and SAPP2 make to the establishment and progression of disease by C. parapsilosis through enabling the attachment of the yeast cells to mammalian cells and modulating macrophage biology and disruption of the complement cascade.IMPORTANCE Aspartyl proteases are present in various organisms and, among virulent species, are considered major virulence factors. Host tissue and cell damage, hijacking of immune responses, and hiding from innate immune cells are the most common behaviors of fungal secreted proteases enabling pathogen survival and invasion. C. parapsilosis, an opportunistic human-pathogenic fungus mainly threatening low-birth weight neonates and children, possesses three SAPP protein-encoding genes that could contribute to the invasiveness of the species. Our results suggest that SAPP1 and SAPP2, but not SAPP3, influence host evasion by regulating cell damage, phagocytosis, phagosome-lysosome maturation, killing, and cytokine secretion. Furthermore, SAPP1 and SAPP2 also effectively contribute to complement evasion.
Insights
Candida parapsilosis virulence is significantly influenced by secreted aspartyl proteases SAPP1 and SAPP2. These proteases aid in host cell adhesion, immune evasion, and complement cascade disruption, contributing to fungal pathogenesis.
Area of Science:
- Mycology
- Immunology
- Biochemistry
Background:
- Candida parapsilosis is an emerging opportunistic fungal pathogen affecting vulnerable populations.
- Secreted aspartyl proteases (Saps) are known virulence factors in Candida albicans, but their role in C. parapsilosis is less understood.
Purpose of the Study:
- To investigate the contribution of C. parapsilosis secreted aspartyl protease genes (SAPP1, SAPP2, SAPP3) to fungal virulence.
- To elucidate the mechanisms by which these proteases impact host-pathogen interactions.
Main Methods:
- Gene expression analysis of SAPP1, SAPP2, and SAPP3.
- In vitro assays assessing fungal adhesion, host cell damage, and macrophage interactions (phagocytosis, phagosome-lysosome maturation, cytokine secretion).
- Biochemical assays to determine the proteolytic activity of purified Sapp1p and Sapp2p against host complement proteins (C3b, C4b, Factor H, FHR-5).
Main Results:
- SAPP1 and SAPP2, but not SAPP3, significantly influenced C. parapsilosis adhesion, host cell damage, macrophage responses, and killing capacity.
- Purified Sapp1p and Sapp2p effectively cleaved complement components C3b, C4b, and Factor H.
- Sapp2p also demonstrated cleavage activity against Factor H-related protein 5 (FHR-5).
Conclusions:
- SAPP1 and SAPP2 are critical virulence factors for Candida parapsilosis.
- These proteases contribute to pathogenesis by promoting yeast attachment, modulating host immune responses (macrophage function), and evading the complement system.
- Targeting SAPP1 and SAPP2 could represent a strategy to combat C. parapsilosis infections.
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