EPCR-dependent PAR2 activation by the blood coagulation initiation complex regulates LPS-triggered interferon responses in mice

Author:

Liang Hai Po H.1,Kerschen Edward J.1,Hernandez Irene1,Basu Sreemanti1,Zogg Mark1,Botros Fady1,Jia Shuang2,Hessner Martin J.2,Griffin John H.3,Ruf Wolfram4,Weiler Hartmut15

Affiliation:

1. Blood Research Institute, BloodCenter of Wisconsin, Milwaukee, WI;

2. Department of Pediatrics, The Medical College of Wisconsin, The Children's Research Institute of Children's Hospital of Wisconsin, Milwaukee, WI;

3. Department of Molecular and Experimental Medicine, and

4. Department of Immunology and Microbial Science, The Scripps Research Institute, La Jolla, CA; and

5. Department of Physiology, The Medical College of Wisconsin, Milwaukee, WI

Abstract

Abstract Infection and inflammation are invariably associated with activation of the blood coagulation mechanism, secondary to the inflammation-induced expression of the coagulation initiator tissue factor (TF) on innate immune cells. By investigating the role of cell-surface receptors for coagulation factors in mouse endotoxemia, we found that the protein C receptor (ProcR; EPCR) was required for the normal in vivo and in vitro induction of lipopolysaccharide (LPS)-regulated gene expression. In cultured bone marrow–derived myeloid cells and in monocytic RAW264.7 cells, the LPS-induced expression of functionally active TF, assembly of the ternary TF-VIIa-Xa initiation complex of blood coagulation, and the EPCR-dependent activation of protease-activated receptor 2 (PAR2) by the ternary TF-VIIa-Xa complex were required for the normal LPS induction of messenger RNAs encoding the TLR3/4 signaling adaptor protein Pellino-1 and the transcription factor interferon regulatory factor 8. In response to in vivo challenge with LPS, mice lacking EPCR or PAR2 failed to fully initiate an interferon-regulated gene expression program that included the Irf8 target genes Lif, Iigp1, Gbp2, Gbp3, and Gbp6. The inflammation-induced expression of TF and crosstalk with EPCR, PAR2, and TLR4 therefore appear necessary for the normal evolution of interferon-regulated host responses.

Publisher

American Society of Hematology

Subject

Cell Biology,Hematology,Immunology,Biochemistry

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