Related Experiment Video
Updated: Jun 29, 2025

Author Spotlight: Tracing the Ferroptotic Signatures and Cell Death Dynamics in Medulloblastoma for Advanced Therapeutics
Published on: March 15, 2024
Mitochondria-mediated ferroptosis induced by CARD9 ablation prevents MDSCs-dependent antifungal immunity
Zhiyong Zhang1,2,3, Pengfei Li2,3, Ying Chen2,3
1Department of Endodontic, Nanjing Stomatological Hospital, Affiliated Hospital of Medical School, Research Institute of Stomatology, Nanjing University, Nanjing, 210008, China.
Insights
Caspase Recruitment Domain-containing protein 9 (CARD9) ablation enhances ferroptosis in myeloid-derived suppressor cells (MDSCs), impairing antifungal immunity. Targeting this ferroptosis offers a novel therapeutic strategy for kidney injury during disseminated candidiasis.
Area of Science:
- Immunology
- Mycology
- Renal Pathology
Background:
- Caspase Recruitment Domain-containing protein 9 (CARD9) is crucial for myeloid cell-mediated antifungal immunity against disseminated candidiasis.
- Hereditary CARD9 deficiency leads to fatal disseminated candidiasis, but the underlying myeloid cell types and molecular mechanisms are unclear.
Purpose of the Study:
- To elucidate the role of CARD9 in protecting against disseminated candidiasis and identify the molecular mechanisms of CARD9 ablation-induced kidney injury.
- To investigate the impact of CARD9 deficiency on myeloid-derived suppressor cells (MDSCs) and their susceptibility to ferroptosis.
Main Methods:
- In vivo and in vitro studies assessed the role of CARD9 ablation in disseminated candidiasis.
- RNA-sequencing analysis identified molecular mechanisms linking CARD9 ablation to acute kidney injury.
- Quantitative real-time PCR and western blot measured mitochondrial and ferroptosis-associated protein expression.
Main Results:
- CARD9 ablation reduced kidney MDSCs and solute carrier family 7 member 11 (SLC7A11) expression, increasing susceptibility to acute kidney injury and ferroptosis during Candida tropicalis infection.
- CARD9-deficient MDSCs exhibited ferroptosis due to augmented mitochondrial oxidative phosphorylation (OXPHOS) from reduced SLC7A11.
- The Syk-PKCδ-CARD9-FosB signaling axis regulates SLC7A11 expression in MDSCs, with FosB binding to the SLC7A11 promoter.
Conclusions:
- CARD9 ablation promotes mitochondria-mediated ferroptosis in MDSCs, negatively impacting antifungal immunity.
- Mitochondria-mediated ferroptosis in MDSCs is a novel mechanism underlying CARD9 ablation-exacerbated acute kidney injury in disseminated candidiasis.
- Targeting mitochondria-mediated ferroptosis presents a potential therapeutic strategy for disseminated candidiasis-associated acute kidney injury.
Background:
Caspase Recruitment Domain-containing protein 9 (CARD9) expressed in myeloid cells has been demonstrated to play an antifungal immunity role in protecting against disseminated candidiasis. Hereditary CARD9 ablation leads to fatal disseminated candidiasis. However, the myeloid cell types and molecular mechanisms implicated in CARD9 protecting against disseminated candidiasis remain wholly elusive.
Methods:
The role of CARD9 ablation in exacerbating disseminated candidiasis was determined in vivo and in vitro. The molecular mechanism by which CARD9 ablation promotes acute kidney injury in disseminated candidiasis was identified by RNA-sequencing analysis. The expression of mitochondrial proteins and ferroptosis-associated proteins were measured by Quantitative real-time PCR and western blot.
Results:
CARD9 ablation resulted in a reduced proportion of myeloid-derived suppressor cells (MDSCs) and a substantially lower expression of solute carrier family 7 member 11 (SLC7A11) in the kidneys, which increased susceptibility to acute kidney injury and renal ferroptosis during disseminated Candida tropicalis (C. tropicalis) infection. Moreover, CARD9-deficient MDSCs were susceptible to ferroptosis upon stimulation with C. tropicalis, which was attributed to augmented mitochondrial oxidative phosphorylation (OXPHOS) caused by reduced SLC7A11 expression. Mechanistically, C-type lectin receptors (CLRs)-mediated recognition of C. tropicalis promoted the expression of SLC7A11 which was transcriptionally manipulated by the Syk-PKCδ-CARD9-FosB signaling axis in MDSCs. FosB enhanced SLC7A11 transcription by binding to the promoter of SLC7A11 in MDSCs stimulated with C. tropicalis. Mitochondrial OXPHOS, which was negatively regulated by SLC7A11, was responsible for inducing ferroptosis of MDSCs upon C. tropicalis stimulation. Finally, pharmacological inhibition of mitochondrial OXPHOS or ferroptosis significantly increased the number of MDSCs in the kidneys to augment host antifungal immunity, thereby attenuating ferroptosis and acute kidney injury exacerbated by CARD9 ablation during disseminated candidiasis.
Conclusions:
Collectively, our findings show that CARD9 ablation enhances mitochondria-mediated ferroptosis in MDSCs, which negatively regulates antifungal immunity. We also identify mitochondria-mediated ferroptosis in MDSCs as a new molecular mechanism of CARD9 ablation-exacerbated acute kidney injury during disseminated candidiasis, thus targeting mitochondria-mediated ferroptosis is a novel therapeutic strategy for acute kidney injury in disseminated candidiasis.
Related Concept Videos
Necrosis
Morphological Manifestations of Necrosis
Necrotic cells show different types of morphological appearance depending on the type of tissue and infection. In coagulative necrosis, cells become...
Electron Transport Chain: Complex I and II
ROS generation is regulated and maintained at moderate levels necessary...

