Survey of the Transcription Factor Responses of Mouse Lung Alveolar Macrophages to Pneumocystis murina.
Theodore J KottomKyle SchaefbauerEva M CarmonaAndrew H LimperPublished in: Pathogens (Basel, Switzerland) (2021)
Pneumocystis jirovecii is a fungal pathogen that can cause life-threatening infections in individuals who are immunocompromised. Acquired via inhalation, upon entering the respiratory tract, the fungi first encounter innate immune cells such as alveolar macrophages (AMs). Relatively little is known about the AM cellular responses to the organism, and particularly transcription factor (TF) profiles leading to early host responses during infection. Utilizing the Mouse Transcription Factors RT2 Profiler™ PCR Array, we report an initial TF survey of these macrophage and Pneumocystis interactions. Expression levels of a panel of mouse TFs were compared between unstimulated and Pneumocystis murina-stimulated AMs. Interestingly, a number of TFs previously implicated in pathogen-host cell interactions were highly up- or downregulated, including hif1a and Pparg. qPCR experiments were further conducted to verify the results of these surveyed transcripts. Furthermore, with immunoblotting, we show that HIF-1A and PPAR-γ are indeed significantly upregulated and downregulated, respectively. Lastly, and importantly, we report that in the mouse model of Pneumocystis pneumonia (PCP), which mimics human Pneumocystis jirovecii pneumonia (PJP), qPCR analysis of Pneumocystis murina lungs also mimic the initial TF profile analysis, suggesting an importance for these TFs in immunocompromised hosts with Pneumocystis pneumonia. These data demonstrate the use of TF profiling in host AMs and Pneumocystis organism interactions that may lead to a better understanding of the specific inflammatory responses of the host to Pneumocystis pneumonia and may inform novel strategies for potential therapeutics.
Keyphrases
- transcription factor
- endothelial cells
- mouse model
- immune response
- single cell
- respiratory failure
- poor prognosis
- cross sectional
- stem cells
- mass spectrometry
- risk assessment
- candida albicans
- small molecule
- insulin resistance
- skeletal muscle
- deep learning
- fatty acid
- mesenchymal stem cells
- bone marrow
- dna binding
- cell therapy
- acute respiratory distress syndrome
- human health
- mechanical ventilation