Publication | Open Access
Low density lipoprotein receptor-related protein/alpha 2-macroglobulin receptor is an hepatic receptor for tissue-type plasminogen activator.
315
Citations
36
References
1992
Year
ImmunologyPathologyAntigen ProcessingLow DensityImmunotherapyHepatic ReceptorMolecular PharmacologyTissue-type Plasminogen ActivatorCell SignalingMolecular PhysiologyG Protein-coupled ReceptorLiver PhysiologyReceptor (Biochemistry)Vascular BiologyPharmacologyCell BiologySignal TransductionHepatologyLiver DiseaseLipoprotein MetabolismSerine ProteaseMedicine
Tissue-type plasminogen activator (t-PA), a serine protease that catalyzes the initial and rate-limiting step in the fibrinolytic cascade, is cleared rapidly in vivo by the liver. Using chemical crosslinking, we have recently identified a plasminogen-activator inhibitor type 1 (PAI-1)-independent t-PA clearance receptor on rat hepatoma MH1C1 cells with a relative molecular mass of approximately 500 kDa. Another recently identified membrane receptor, low density lipoprotein receptor-related protein/alpha 2-macroglobulin receptor (LRP/alpha 2MR), was also detected on MH1C1 hepatoma cells by using immunoprecipitation with anti-LRP/alpha 2MR antibody. When analyzed by SDS/PAGE, we found the t-PA receptor identified on MH1C1 cells comigrated with the large subunit of LRP/alpha 2MR. The t-PA receptor was immunoprecipitated by an anti-LRP/alpha 2MR antibody after chemical crosslinking of specifically bound 125I-labeled t-PA to its receptor. Through chemical crosslinking studies, we found that t-PA and methylamine-activated alpha 2-macroglobulin could bind to LRP/alpha 2MR simultaneously without competing with one another for binding, suggesting that the two ligands bound to two independent sites on the LRP/alpha 2MR molecule. Furthermore, a 39-kDa protein, which modulates ligand binding to LRP/alpha 2MR, was also found to inhibit t-PA binding to its receptor. These data thus show that the t-PA clearance receptor identified on MH1C1 hepatoma cells is LRP/alpha 2MR.
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Surface location and high affinity for calcium of a 500-kd liver membrane protein closely related to the LDL-receptor suggest a physiological role as lipoprotein receptor. Joachim Herz, Ute Hamann, Sissel Rogne, Proteinlipid InteractionMolecular PhysiologySignal TransductionBiochemistryLiver Physiology | 1988 | 955 |
1985 | 852 | |
1981 | 788 | |
1989 | 677 | |
1990 | 660 | |
1991 | 583 | |
1984 | 361 |
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