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Glycoprotein V/CD42d Products

GPV (platelet glycoprotein V; designated CD42d) is an 83 kDa type I transmembrane (TM) glycoprotein of the leucine-rich repeat (LRR) family. It is expressed exclusively within the platelet / megakaryocyte lineage, where it noncovalently interacts with other platelet TM LRR proteins, GPIb alpha/beta and GPIX, at a ratio of one GPV to two of each other subunit. The GPI-V-IX complex tethers platelets to von Willebrand factor on the surface of injured endothelial cells. Absence of the complex results in Bernard-Soulier syndrome, a rare bleeding disorder. The human GPV cDNA encodes a 560 amino acid (aa) protein with a 16 aa signal sequence, a 507 aa extracellular domain (ECD) containing 15 LRR, a 21 aa TM sequence, and a short (16 aa) cytoplasmic tail that binds calmodulin in resting, but not activated platelets. The human GPV ECD shares 70%, 71% and 81% aa identity with mouse, rat and equine GPV, respectively. GPV can form soluble fragments of 80 kDa by ADAM10 or ADAM17 cleavage after P507, or 69 kDa by thrombin cleavage after R476. High circulating soluble GPV may be an indicator of platelet activation, but may also be caused by high doses of aspirin. The function of GPV is not entirely clear. Deletion of GPV in mice does not produce any obvious change to surface expression or function of GPIb and GPIX, but surface expression of GPV requires GPIb. Deletion studies also indicate that GPV may play a minor role in collagen adhesion, and may modify platelet aggregation in response to thrombin.

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84 results for "Glycoprotein V/CD42d" in Products

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84 results for "Glycoprotein V/CD42d" in Products

Glycoprotein V/CD42d Products

GPV (platelet glycoprotein V; designated CD42d) is an 83 kDa type I transmembrane (TM) glycoprotein of the leucine-rich repeat (LRR) family. It is expressed exclusively within the platelet / megakaryocyte lineage, where it noncovalently interacts with other platelet TM LRR proteins, GPIb alpha/beta and GPIX, at a ratio of one GPV to two of each other subunit. The GPI-V-IX complex tethers platelets to von Willebrand factor on the surface of injured endothelial cells. Absence of the complex results in Bernard-Soulier syndrome, a rare bleeding disorder. The human GPV cDNA encodes a 560 amino acid (aa) protein with a 16 aa signal sequence, a 507 aa extracellular domain (ECD) containing 15 LRR, a 21 aa TM sequence, and a short (16 aa) cytoplasmic tail that binds calmodulin in resting, but not activated platelets. The human GPV ECD shares 70%, 71% and 81% aa identity with mouse, rat and equine GPV, respectively. GPV can form soluble fragments of 80 kDa by ADAM10 or ADAM17 cleavage after P507, or 69 kDa by thrombin cleavage after R476. High circulating soluble GPV may be an indicator of platelet activation, but may also be caused by high doses of aspirin. The function of GPV is not entirely clear. Deletion of GPV in mice does not produce any obvious change to surface expression or function of GPIb and GPIX, but surface expression of GPV requires GPIb. Deletion studies also indicate that GPV may play a minor role in collagen adhesion, and may modify platelet aggregation in response to thrombin.

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Applications: ELISA
Applications: Flow
Reactivity: Human
Applications: Flow
Reactivity: Human
Applications: Flow
Reactivity: Human
Applications: Flow
Reactivity: Human
Applications: Flow
Reactivity: Human
Applications: Flow
Reactivity: Human
Applications: Flow
Reactivity: Human
Applications: BA
Applications: IHC, Flow, IP
Reactivity: Mouse, Rat
Applications: ICC/IF
Reactivity: Human
Applications: ELISA
Applications: AC
Applications: Flow, CyTOF-ready
Reactivity: Human
Applications: IHC, Flow, IP
Reactivity: Mouse, Rat
Applications: IHC, Flow, IP
Reactivity: Mouse, Rat
Applications: Flow, CyTOF-ready
Reactivity: Human
Applications: IHC, Flow, IP
Reactivity: Mouse, Rat
Applications: Flow, CyTOF-ready
Reactivity: Human
Applications: Flow, CyTOF-ready
Reactivity: Human
Applications: IHC, Flow, IP
Reactivity: Mouse, Rat
Applications: IHC, Flow, IP
Reactivity: Mouse, Rat
Applications: Flow, CyTOF-ready
Reactivity: Human
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