Catalog: | C-FC-4007A |
Product Type: | FCM Antibody |
Size: | 25 Tests/100 Tests |
Concentration: | 5 μl/Test, 0.1 mg/ml |
Reactivity: | Mouse |
Specificity: | Mouse EPCR |
Analysis mode: | FCM |
Host: | Rabbit |
Clonality: | Monoclonal |
Isotype: | IgG |
Alternate names: | protein C receptor, endothelial |
Form: | Liquid |
Shipping: | This antibody is shipped as liquid solution at ambient temperature. Upon receipt, store it immediately at the temperature recommended below. |
Storage: | This antibody can be stored at 2℃-8℃ for twelve months without detectable loss of activity. Protected from prolonged exposure to light. Do not freeze ! Sodium azide is toxic to cells and should be disposed of properly. Flush with large volumes of water during disposal. |
Purification method: | Protein A |
Conjugation: | FITC |
Immunogen: | Recombinant Mouse Epcr/PROCR Protein |
Buffer: | Aqueous solution containing 0.5% BSA and 0.09% sodium azide |
Application: | Serine Proteases and Regulators |
Endothelial protein C receptor (EPCR), also known as activated protein C receptor (APC receptor) or PROCR, is a receptor for Protein C. Protein C plays an important role in many metabolism processes in humans and other animals after activated by binding to Endothelial protein C receptor (EPCR). Because of the EPCR is found primarily on endothelial cells (cells on the inside of blood vessels), activated protein C is found mainly near endothelial cells. Protein C is pleiotropic, with two main functions: anticoagulation and cytoprotection. Which function will be performed depending on whether or not protein C remains bind to EPCR after activated. The anticoagulation occurs when it does not. In this case, protein C functions as an anticoagulant by irreversibly proteolytically inactivating Factor Va and Factor VIIIa, turning them into Factor Vi and Factor VIIIi respectively. When still bound to EPCR, activated protein C performs its cytoprotective effects, acting on the effector substrate PAR-1, protease-activated receptor-1. To a degree, APC's anticoagulant properties are independent of its cytoprotective ones, in that expression of one pathway is not affected by the existence of the other.
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