Glycoprotein (GP) Ib-IX-transfected cells roll on a von Willebrand factor matrix under flow - Importance of the GPIb/actin-binding protein (ABP-280) interaction in maintaining adhesion under high shear

被引:74
作者
Cranmer, SL
Ulsemer, P
Cooke, BM
Salem, HH
de la Salle, C
Lanza, F
Jackson, SP
机构
[1] Monash Med Sch, Dept Med, Australian Ctr Blood Dis, Box Hill, Vic 3128, Australia
[2] Monash Univ, Dept Microbiol, Box Hill, Vic 3128, Australia
[3] Box Hill Hosp, Dept Pathol, Box Hill, Vic 3128, Australia
[4] Etablissement Transfus Sanguine, INSERM, U311, F-67065 Strasbourg, France
关键词
D O I
10.1074/jbc.274.10.6097
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Adhesion of platelets to sites of vascular injury is critical for hemostasis and thrombosis and is dependent on the binding of the vascular adhesive protein von Willebrand factor (vWf) to the glycoprotein (GP) Ib-V-M complex on the platelet surface. A unique but poorly defined characteristic of this receptor/ligand interaction is its ability to support platelet adhesion under conditions of high shear stress. To examine the structural domains of the GPIb-V-IX complex involved in mediating cell adhesion under flow, we have expressed partial (GPIb-IX), complete (GPIb-V-IX), and mutant (GPIb alpha cytoplasmic tail mutants) receptor complexes on the surface of Chinese hamster ovary (CHO) cells and examined their ability to adhere to a vWf matrix in flow-based adhesion assays. Our studies demonstrate that the partial receptor complex (GPIb-IX) supports CHO cell tethering and rolling on a bovine or human vWf matrix under flow. The adhesion was specifically inhibited by an antiGPI alpha blocking antibody (AK2) and was not observed with CHO cells expressing GPIb beta and GPIX alone. The velocity of rolling was dependent on the level of shear stress, receptor density, and matrix concentration and was not altered by the presence of GPV. In contrast to selectins, which mediate cell rolling under conditions of low shear (20-200 s(-1)), GPIb-IX was able to support cell rolling at both venous (150 s(-1)) and arterial (1500-10,500 s(-1)) shear rates. Studies with a mutant GPIba receptor subunit lacking the binding domain for actin-binding protein demonstrated that the association of the receptor complex with the membrane skeleton is not essential for cell tethering or rolling under low shear conditions, but is critical for maintaining adhesion at high shear rates (3000-6000 s(-1)). These studies demonstrate that the GPIb-IX complex is sufficient to mediate cell rolling on a vWf matrix at both venous and arterial levels of shear independent of other platelet adhesion receptors. Furthermore, our results suggest that the association between GPIb alpha and actin-binding protein plays an important role in enabling cells to remain tethered to a vWf matrix under conditions of high shear stress.
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页码:6097 / 6106
页数:10
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