Williamson David, Pikovski Inna, Cranmer Susan L, Mangin Pierre, Mistry Nayna, Domagala Teresa, Chehab Sam, Lanza Francois, Salem Hatem H, Jackson Shaun P
Australian Centre for Blood Diseases, Department of Medicine, Monash University, Box Hill Hospital, Victoria 3128, Australia.
J Biol Chem. 2002 Jan 18;277(3):2151-9. doi: 10.1074/jbc.M109384200. Epub 2001 Nov 7.
The interaction of the glycoprotein (GP) Ib-V-IX receptor complex with the membrane skeleton of platelets is dependent on a specific interaction between the cytoplasmic tail of GPIbalpha and filamin-1. This interaction has been proposed to regulate key aspects of platelet function, including the ligand binding of GPIb-V-IX and the ability of the cells to sustain adhesion to von Willebrand factor (vWf) under high shear. In this study we have examined sequences in the GPIbalpha intracellular domain necessary for interaction of the receptor with filamin-1. We have identified two adjacent sequences involving amino acids 557-568 and 569-579 of the GPIbalpha cytoplasmic domain that are critical for normal association between the receptor complex and filamin-1. Under flow conditions, Chinese hamster ovary (CHO) cells expressing these two mutant receptors exhibited an increase in translocation velocity that was associated with increased cell detachment from the vWf matrix at high shear. The shear-dependent acceleration in velocity of mutant Delta557-568 and Delta569-579 CHO cells was associated with a critical defect in receptor anchorage, evident from significant extraction of GPIb-IX from the CHO cell membrane at high shear. These studies define a critical role for amino acids within the 557-579 sequence of GPIbalpha for interaction with filamin-1.
糖蛋白(GP)Ib-V-IX受体复合物与血小板膜骨架的相互作用取决于GPIα亚基胞质尾与细丝蛋白-1之间的特异性相互作用。有人提出这种相互作用可调节血小板功能的关键方面,包括GPIb-V-IX的配体结合以及细胞在高剪切力下与血管性血友病因子(vWf)持续黏附的能力。在本研究中,我们检测了GPIα亚基胞内结构域中受体与细丝蛋白-1相互作用所必需的序列。我们鉴定出GPIα亚基胞质结构域中涉及氨基酸557-568和569-579的两个相邻序列,它们对于受体复合物与细丝蛋白-1的正常结合至关重要。在流动条件下,表达这两种突变受体的中国仓鼠卵巢(CHO)细胞的转位速度增加,这与高剪切力下细胞从vWf基质上的脱离增加有关。突变型Delta557-568和Delta569-579 CHO细胞速度的剪切依赖性加速与受体锚定的关键缺陷有关,这从高剪切力下CHO细胞膜上GPIb-IX的大量提取中可以明显看出。这些研究确定了GPIα亚基557-579序列中的氨基酸与细丝蛋白-1相互作用的关键作用。