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Live-cell Video Microscopy of Fungal Pathogen Phagocytosis
Published on: January 9, 2013
The secreted Candida albicans protein Pra1 disrupts host defense by broadly targeting and blocking complement C3 and
Shanshan Luo1, Prasad Dasari1, Nadine Reiher2
1Department of Infection Biology, Leibniz Institute for Natural Product Research and Infection Biology, Hans Knöll Institute, Jena, Germany.
Abstract:
Candida albicans the most frequently isolated clinical fungal pathogen can cause local as well as systemic and life-threatening infections particularly in immune-compromised individuals. A better and more detailed understanding how C. albicans evades human immune attack is therefore needed for identifying fungal immune-evasive proteins and develop new therapies. Here, we identified Pra1, the pH-regulated C. albicans antigen as a hierarchical complement inhibitor that targets C3, the central human complement component. Pra1 cleaved C3 at a unique site and further inhibited effector function of the activation fragments. The newly formed C3a-like peptide lacked the C-terminal arginine residue needed for C3a-receptor binding and activation. Moreover, Pra1 also blocked C3a-like antifungal activity as shown in survival assays, and the C3b-like molecule formed by Pra1 was degraded by the host protease Factor I. Pra1 also bound to C3a and C3b generated by human convertases and blocked their effector functions, like C3a antifungal activity shown by fungal survival, blocked C3a binding to human C3a receptor-expressing HEK cells, activation of Fura2-AM loaded cells, intracellular Ca2+ signaling, IL-8 release, C3b deposition, as well as opsonophagocytosis and killing by human neutrophils. Thus, upon infection C. albicans uses Pra1 to destroy C3 and to disrupt host complement attack. In conclusion, candida Pra1 represents the first fungal C3-cleaving protease identified and functions as a fungal master regulator of innate immunity and as a central fungal immune-escape protein.
Insights
Candida albicans uses Pra1, a novel protease, to inhibit the human complement system by cleaving C3. This fungal immune evasion strategy disrupts innate immunity, offering new therapeutic targets.
Area of Science:
- Medical Mycology
- Immunology
- Biochemistry
Background:
- Candida albicans is a major fungal pathogen causing severe infections, especially in immunocompromised individuals.
- Understanding fungal immune evasion mechanisms is crucial for developing new antifungal therapies.
Purpose of the Study:
- To identify and characterize proteins used by Candida albicans to evade the human immune system.
- To investigate the role of the pH-regulated antigen Pra1 in complement evasion.
Main Methods:
- Biochemical assays to analyze C3 cleavage by Pra1.
- Functional assays to assess the impact of Pra1 on complement component activity.
- Cell-based assays using HEK cells and human neutrophils to evaluate immune cell signaling and function.
Main Results:
- Pra1 was identified as a protease that cleaves human C3 at a unique site.
- Pra1 inhibited complement activation by preventing C3a receptor binding and C3b opsonization.
- Pra1 disrupted C3a-mediated antifungal activity and neutrophil-based immune responses.
Conclusions:
- Pra1 is the first identified fungal protease that cleaves C3, acting as a master regulator of innate immunity.
- C. albicans utilizes Pra1 to disrupt the host complement system, facilitating immune evasion.
- Pra1 represents a potential target for novel antifungal therapies.
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