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Published on: April 7, 2015
A critical role for CARD9 in pneumocystis pneumonia host defence
Theodore J Kottom1, Vijayalakshmi Nandakumar1, Deanne M Hebrink1
1Department of Pulmonary and Critical Care Medicine, Division of Thoracic Diseases Research, Mayo Clinic College of Medicine, Rochester, Minnesota, USA.
Insights
Caspase recruitment domains-containing protein 9 (CARD9) is crucial for host defense against Pneumocystis pneumonia. CARD9 deficiency impairs fungal clearance and macrophage responses, highlighting its role in innate immunity.
Area of Science:
- Immunology
- Microbiology
- Molecular Biology
Background:
- Caspase recruitment domains-containing protein 9 (CARD9) is an adaptor protein in C-type lectin receptor (CLR) signaling.
- CLRs recognize Pneumocystis, but CARD9's role in host defense against this pathogen is unknown.
Purpose of the Study:
- To investigate the function of CARD9 in host defense against Pneumocystis infection.
- To elucidate CARD9's role in innate immune responses and macrophage function during Pneumocystis pneumonia (PCP).
Main Methods:
- Analysis of CARD9-deficient (CARD9-/-) and wild-type (WT) mice infected with Pneumocystis.
- Assessment of fungal clearance, inflammatory responses, and macrophage differentiation/polarization.
- In vitro killing assays and cytokine level measurements.
Main Results:
- CARD9-/- mice showed reduced fungal clearance and impaired proinflammatory responses.
- CARD9 deficiency compromised macrophage differentiation, M1/M2 polarization, and Pneumocystis killing.
- Despite increased fungal burden, CARD9-/- mice had similar survival rates to WT mice, possibly due to reduced lung injury.
Conclusions:
- CARD9 plays a critical role in innate immune responses against Pneumocystis.
- CARD9 is essential for effective macrophage function and fungal clearance during PCP.
- While innate immunity is affected, adaptive immune responses (T-helper cytokines) remain intact in CARD9-/- mice.
Abstract:
Caspase recruitment domains-containing protein 9 (CARD9) is an adaptor molecule critical for key signalling pathways initiated through C-type lectin receptors (CLRs). Previous studies demonstrated that Pneumocystis organisms are recognised through a variety of CLRs. However, the role of the downstream CARD9 adaptor signalling protein in host defence against Pneumocystis infection remains to be elucidated. Herein, we analysed the role of CARD9 in host defence against Pneumocystis both in CD4-depleted CARD9-/- and immunocompetent hosts. Card9 gene-disrupted (CARD9-/- ) mice were more susceptible to Pneumocystis, as evidenced by reduced fungal clearance in infected lungs compared to wild-type (WT) infected mice. Our data suggests that this defect was due to impaired proinflammatory responses. Furthermore, CARD9-/- macrophages were severely compromised in their ability to differentiate and express M1 and M2 macrophage polarisation markers, to enhanced mRNA expression for Dectin-1 and Mincle, and most importantly, to kill Pneumocystis in vitro. Remarkably, compared to WT mice, and despite markedly increased organism burdens, CARD9-/- animals did not exhibit worsened survival during pneumocystis pneumonia (PCP), perhaps related to decreased lung injury due to altered influx of inflammatory cells and decreased levels of proinflammatory cytokines in response to the organism. Finally, although innate phase cytokines were impaired in the CARD9-/- animals during PCP, T-helper cell cytokines were normal in immunocompetent CARD9-/- animals infected with Pneumocystis. Taken together, our data demonstrate that CARD9 has a critical function in innate immune responses against Pneumocystis.
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