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A human commensal-pathogenic fungus suppresses host immunity via targeting TBK1
Gang Luo1, Jingkai Zhang1, Tianxu Wang1
1Hubei Key Laboratory of Cell Homeostasis, College of Life Sciences, TaiKang Center for Life and Medical Sciences, Wuhan University, Wuhan 430072, China.
Abstract:
Candida albicans stably colonizes humans but is the leading cause of hospital-acquired fungemia. Traditionally, masking immunogenic moieties has been viewed as a tactic for immune evasion. Here, we demonstrate that C. albicans blocks type I interferon (IFN-I) signaling via translocating an effector protein Cmi1 into host cells. Mechanistically, Cmi1 binds and inhibits TANK-binding kinase 1 (TBK1) to abrogate IFN-regulatory factor 3 (IRF3) phosphorylation, thereby suppressing the IFN-I cascade. Murine infection with a cmi1 mutant displays an exaggerated IFN-I response in both kidneys and bone-marrow-derived macrophages, leading to rapid fungal clearance and host survival. Remarkably, the lack of CMI1 compromises gut commensalism and increases IFN-I response in mouse colonic cells. These phenotypes of cmi1 are rescued by the depletion of IFN-I receptor. This work establishes the importance of TBK1 inhibition in fungal pathogenesis and reveals that a human commensal-pathogenic fungus significantly impacts host immunity during gut colonization and infection via delivering effector proteins into host cells.
Insights
Candida albicans evades immune detection by injecting a protein that blocks type I interferon signaling. This mechanism is crucial for fungal colonization and infection, impacting host immunity.
Area of Science:
- Immunology
- Microbiology
- Molecular Biology
Background:
- Candida albicans is a common human colonizer and a major cause of hospital-acquired fungemia.
- Fungal immune evasion strategies are critical for pathogenesis.
- Type I interferon (IFN-I) signaling plays a key role in host defense against fungal infections.
Purpose of the Study:
- To investigate the mechanism by which Candida albicans evades the host immune response.
- To identify specific fungal effector proteins involved in immune modulation.
- To understand the role of IFN-I signaling in C. albicans colonization and infection.
Main Methods:
- Investigated the translocation of fungal effector proteins into host cells.
- Utilized a cmi1 mutant strain of C. albicans.
- Assessed IFN-I responses in murine infection models and bone-marrow-derived macrophages.
- Analyzed the impact of Cmi1 on TANK-binding kinase 1 (TBK1) and IFN-regulatory factor 3 (IRF3) phosphorylation.
- Examined the role of the IFN-I receptor in host responses.
Main Results:
- C. albicans translocates the effector protein Cmi1 into host cells to block IFN-I signaling.
- Cmi1 inhibits TBK1, preventing IRF3 phosphorylation and suppressing the IFN-I cascade.
- Mice infected with a cmi1 mutant showed enhanced IFN-I responses, leading to faster fungal clearance and increased survival.
- Loss of CMI1 impaired gut commensalism and heightened IFN-I responses in colonic cells, effects reversed by IFN-I receptor depletion.
Conclusions:
- Fungal effector protein Cmi1 is essential for C. albicans immune evasion by inhibiting TBK1-mediated IFN-I signaling.
- TBK1 inhibition is a critical virulence mechanism for C. albicans.
- C. albicans manipulates host immunity via effector protein delivery, impacting both infection and commensal colonization.
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