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Role of TREM1-DAP12 in renal inflammation during obstructive nephropathy
Alessandra Tammaro1, Ingrid Stroo1, Elena Rampanelli1
1Department of Pathology, Academic Medical Center, University of Amsterdam, Amsterdam, The Netherlands.
Abstract:
Tubulo-interstitial damage is a common finding in the chronically diseased kidney and is characterized by ongoing inflammation and fibrosis leading to renal dysfunction and end-stage renal disease. Upon kidney injury, endogenous ligands can be released which are recognized by innate immune sensors to alarm innate immune system. A new family of innate sensors is the family of TREM (triggering receptor expressed on myeloid cell). TREM1 is an activating receptor and requires association with transmembrane adapter molecule DAP12 (DNAX-associated protein 12) for cell signaling. TREM1-DAP12 pathway has a cross-talk with intracellular signaling pathways of several Toll-like receptors (TLRs) and is able to amplify TLR signaling and thereby contributes to the magnitude of inflammation. So far, several studies have shown that TLRs play a role in obstructive nephropathy but the contribution of TREM1-DAP12 herein is unknown. Therefore, we studied TREM1 expression in human and murine progressive renal diseases and further investigated the role for TREM1-DAP12 by subjecting wild-type (WT), TREM1/3 double KO and DAP12 KO mice to murine unilateral ureter obstruction (UUO) model. In patients with hydronephrosis, TREM1 positive cells were observed in renal tissue. We showed that in kidneys from WT mice, DAP12 mRNA and TREM1 mRNA and protein levels were elevated upon UUO. Compared to WT mice, DAP12 KO mice displayed less renal MCP-1, KC and TGF-β1 levels and less influx of macrophages during progression of UUO, whereas TREM1/3 double KO mice displayed less renal MCP-1 level. Renal fibrosis was comparable in WT, TREM1/3 double KO and DAP12 KO mice. We conclude that DAP12, partly through TREM1/3, is involved in renal inflammation during progression of UUO.
Insights
DNAX-associated protein 12 (DAP12) signaling, partly via triggering receptor expressed on myeloid cells 1 (TREM1), plays a role in kidney inflammation following injury. DAP12 KO mice showed reduced inflammation markers and macrophage influx after unilateral ureter obstruction.
Area of Science:
- Nephrology
- Immunology
- Molecular Biology
Background:
- Tubulo-interstitial damage, inflammation, and fibrosis are hallmarks of chronic kidney disease.
- Innate immune sensors, like the TREM (triggering receptor expressed on myeloid cell) family, detect kidney injury.
- The TREM1-DAP12 pathway amplifies Toll-like receptor (TLR) signaling, contributing to inflammation.
Purpose of the Study:
- To investigate the role of the TREM1-DAP12 pathway in obstructive nephropathy.
- To examine TREM1 expression in human and murine progressive kidney diseases.
Main Methods:
- Studied TREM1 expression in human hydronephrosis and murine unilateral ureter obstruction (UUO) models.
- Utilized wild-type (WT), TREM1/3 double knockout (KO), and DAP12 KO mice in the UUO model.
- Assessed renal levels of inflammatory markers (MCP-1, KC, TGF-β1) and macrophage infiltration.
Main Results:
- TREM1-positive cells were found in human hydronephrotic kidneys.
- UUO increased DAP12 and TREM1 mRNA and protein levels in WT mouse kidneys.
- DAP12 KO mice showed reduced renal MCP-1, KC, TGF-β1, and macrophage influx compared to WT mice.
- TREM1/3 double KO mice exhibited decreased renal MCP-1 levels.
Conclusions:
- DAP12 signaling is implicated in renal inflammation during UUO, partly mediated by TREM1/3.
- The TREM1-DAP12 pathway contributes to inflammatory responses in obstructive kidney injury.
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