Cloning and characterization of human protease-activated receptor 4

W Xu, H Andersen, TE Whitmore… - Proceedings of the …, 1998 - National Acad Sciences
W Xu, H Andersen, TE Whitmore, SR Presnell, DP Yee, A Ching, T Gilbert, EW Davie…
Proceedings of the National Academy of Sciences, 1998National Acad Sciences
Protease-activated receptors 1–3 (PAR1, PAR2, and PAR3) are members of a unique G
protein-coupled receptor family. They are characterized by a tethered peptide ligand at the
extracellular amino terminus that is generated by minor proteolysis. A partial cDNA
sequence of a fourth member of this family (PAR4) was identified in an expressed sequence
tag database, and the full-length cDNA clone has been isolated from a lymphoma Daudi cell
cDNA library. The ORF codes for a seven transmembrane domain protein of 385 amino …
Protease-activated receptors 1–3 (PAR1, PAR2, and PAR3) are members of a unique G protein-coupled receptor family. They are characterized by a tethered peptide ligand at the extracellular amino terminus that is generated by minor proteolysis. A partial cDNA sequence of a fourth member of this family (PAR4) was identified in an expressed sequence tag database, and the full-length cDNA clone has been isolated from a lymphoma Daudi cell cDNA library. The ORF codes for a seven transmembrane domain protein of 385 amino acids with 33% amino acid sequence identity with PAR1, PAR2, and PAR3. A putative protease cleavage site (Arg-47/Gly-48) was identified within the extracellular amino terminus. COS cells transiently transfected with PAR4 resulted in the formation of intracellular inositol triphosphate when treated with either thrombin or trypsin. A PAR4 mutant in which the Arg-47 was replaced with Ala did not respond to thrombin or trypsin. A hexapeptide (GYPGQV) representing the newly exposed tethered ligand from the amino terminus of PAR4 after proteolysis by thrombin activated COS cells transfected with either wild-type or the mutant PAR4. Northern blot showed that PAR4 mRNA was expressed in a number of human tissues, with high levels being present in lung, pancreas, thyroid, testis, and small intestine. By fluorescence in situ hybridization, the human PAR4 gene was mapped to chromosome 19p12.
National Acad Sciences