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Down‐regulation and redistribution of GPV/GPVf 2 , a subunit of von Willebrand factor receptor (GPIb/IX/V complex), on the surface membrane of thrombin‐stimulated human platelets
Author(s) -
Kawano Hironori,
Suzuki Hidenori,
Tanoue Kenjiro,
Kimura Akiro,
Fujimura Kingo
Publication year - 1999
Publication title -
british journal of haematology
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 1.907
H-Index - 186
eISSN - 1365-2141
pISSN - 0007-1048
DOI - 10.1046/j.1365-2141.1999.01131.x
Subject(s) - platelet glycoprotein gpib ix complex , platelet , von willebrand factor , glycoprotein ib , thrombin , chemistry , platelet membrane glycoprotein , receptor , platelet activation , biophysics , cell surface receptor , protein subunit , microbiology and biotechnology , biochemistry , biology , immunology , gene
We have studied down‐regulation and redistribution of glycoprotein V (GPV) and its fragment GPVf 2 , a subunit of a receptor for von Willebrand factor (VWF), on the surface membrane of thrombin and thrombin receptor activating peptide (TRAP) stimulated platelets by using a newly developed GPVf 2 ‐specific monoclonal antibody (1D9). Immunoelectronmicroscopical studies revealed that about 50% each of total GPV and GPIX were expressed on the surface membrane of the resting human platelets, and about 83% of GPlbα was expressed on the surface. In thrombin‐stimulated platelets, the surface GPIbα, GPIX and GPV, after hydrolysis by thrombin, was converted to GPVf 2 , translocated from the surface to the intraplatelet pool and then again redistributed to the surface. In TRAP‐stimulated platelets, GPIbα, GPIX and GPV, without conversion to GPVf 2 , were translocated from the surface to the intraplatelet pool and then returned to the surface. Ristocetin‐induced agglutinations of both the thrombin‐ and TRAP‐stimulated platelets were lowered during the decreased surface expressions of GPIbα, GPIX and GPV/GPVf 2 and then normalized when these GPs were again redistributed onto the surface, indicating that the redistributed GPIb/IX/Vf 2 complex on the surface can act as a VWF receptor as efficiently as an intact GPIb/IX/V.

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