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Published on: June 8, 2012
Pneumocystis stimulates MCP-1 production by alveolar epithelial cells through a JNK-dependent mechanism
Jing Wang1, Francis Gigliotti, Samir P Bhagwat
1Department of Pediatrics, University of Rochester School of Medicine and Dentistry, Rochester, New York 14642, USA.
Abstract:
Pneumocystis carinii is an opportunistic fungal pathogen that causes pneumonia (PCP) in immunocompromised individuals. Recent studies have demonstrated that the host's immune response is clearly responsible for the majority of the pathophysiological changes associated with PCP. P. carinii interacts closely with alveolar epithelial cells (AECs); however, the nature and pathological consequences of the epithelial response remain poorly defined. Monocyte chemotactic protein-1 (MCP-1) is involved in lung inflammation, immunity, and epithelial repair and is upregulated during PCP. To determine whether AECs are an important source of MCP-1 in the P. carinii-infected lung, in vivo and in vitro studies were performed. In situ hybridization showed that MCP-1 mRNA was localized to cells with morphological characteristics of AECs in the lungs of infected mice. In vitro studies demonstrated that P. carinii stimulated a time- and dose-dependent MCP-1 response in primary murine type II cells that was preceded by JNK activation. Pharmacological inhibition of JNK nearly abolished P. carinii-stimulated MCP-1 production, while ERK, p38 MAPK, and TNF receptor signaling were not required. Furthermore, delivery of a JNK inhibitory peptide specifically to pulmonary epithelial cells using a recombinant adenovirus vector blocked the early lung MCP-1 response following intratracheal instillation of infectious P. carinii. JNK inhibition did not affect P. carinii-stimulated production of macrophage inflammatory protein-2 in vitro or in vivo, indicating that multiple signaling pathways are activated in P. carinii-stimulated AECs. These data demonstrate that AECs respond to P. carinii in a proinflammatory manner that may contribute to the generation of immune-mediated lung injury.
Insights
Alveolar epithelial cells (AECs) produce monocyte chemotactic protein-1 (MCP-1) in response to Pneumocystis carinii infection. This response, mediated by JNK signaling, contributes to lung inflammation and injury in Pneumocystis pneumonia (PCP).
Area of Science:
- Immunology
- Cell Biology
- Pulmonology
Background:
- Pneumocystis carinii pneumonia (PCP) is a severe lung infection in immunocompromised individuals.
- The host immune response, particularly involving alveolar epithelial cells (AECs), drives PCP pathology.
- Monocyte chemotactic protein-1 (MCP-1) is implicated in lung inflammation during PCP, but its source and regulation by AECs are unclear.
Purpose of the Study:
- To investigate whether AECs are a significant source of MCP-1 in P. carinii-infected lungs.
- To elucidate the signaling pathways involved in P. carinii-induced MCP-1 production by AECs.
Main Methods:
- In situ hybridization to localize MCP-1 mRNA in infected mouse lungs.
- In vitro studies using primary murine type II AECs stimulated with P. carinii.
- Pharmacological inhibition of JNK and other signaling pathways (ERK, p38 MAPK).
- Adenovirus-mediated delivery of a JNK inhibitory peptide to pulmonary epithelial cells in vivo.
Main Results:
- MCP-1 mRNA was detected in AECs in P. carinii-infected mouse lungs.
- P. carinii stimulated a time- and dose-dependent MCP-1 production in AECs, preceded by JNK activation.
- JNK inhibition significantly reduced P. carinii-induced MCP-1 production, while other pathways were not required.
- Targeted JNK inhibition in pulmonary epithelial cells blocked the early lung MCP-1 response in vivo.
- JNK inhibition did not affect MCP-2 production, indicating pathway specificity.
Conclusions:
- AECs are a key source of MCP-1 in response to P. carinii infection.
- JNK signaling is critical for P. carinii-induced MCP-1 production by AECs.
- Proinflammatory responses of AECs to P. carinii may contribute to immune-mediated lung injury in PCP.
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Risk Factors
Various factors influence the likelihood of developing pneumonia. Age plays a crucial role, with infants, children under two, and individuals over 65 at increased risk due to their...

