Schade Alicia J, Arya Maneesh, Gao Shan, Diz-Küçükkaya Reyhan, Anvari Bahman, McIntire Larry V, López José A, Dong Jing-fei
Cox Laboratory for Biomedical Engineering, Rice University, Houston, Texas 77030, USA.
Biochemistry. 2003 Feb 25;42(7):2245-51. doi: 10.1021/bi026549n.
The interaction of the platelet glycoprotein (GP) Ib-IX-V complex with von Willebrand factor (VWF) is a critical step in the adhesion of platelets to the subendothelial matrix following endothelial cell damage, particularly under arterial flow conditions. In the human GP Ib-IX-V complex, the recognition of VWF appears to be mediated entirely by GP Ibalpha, the largest of four GP Ib-IX-V polypeptides. The goal of the present study was to investigate the involvement of the cytoplasmic domain of GP Ibalpha in the GP Ib-IX-VWF interaction under both static conditions and in the presence of high fluid shear stress. Using Chinese hamster ovary (CHO) cells that express GP Ibbeta, GP IX, and either wild-type GP Ibalpha or GP Ibalpha mutants missing various lengths of the cytoplasmic domain, we evaluated adhesion and flow-driven cell rolling on immobilized VWF in a parallel-plate flow chamber. Cells expressing GP Ibalpha polypeptides with truncations of 6-82 amino acids rolled faster than cells expressing wild-type GP Ibalpha. Cells that expressed polypeptides with intact actin-binding protein 280 binding sites (truncated to residue 582 of 610) rolled more slowly than those expressing GP Ibalpha with longer truncations. The rolling velocity of cells expressing truncated GP Ibalpha mutants increased with decreasing VWF coating density. In addition, a fraction of the truncated cells exhibited saltatory translocation at the lower VWF densities. Studies measuring the GP Ibalpha-VWF bond strength of three of the mutants using laser tweezers showed that progressive deletion of the cytoplasmic domain led to progressive weakening of the strength of individual GP Ibalpha-VWF bonds.
血小板糖蛋白(GP)Ib-IX-V复合物与血管性血友病因子(VWF)的相互作用是内皮细胞损伤后血小板黏附于内皮下基质的关键步骤,尤其是在动脉血流条件下。在人GP Ib-IX-V复合物中,VWF的识别似乎完全由GP Ibalpha介导,GP Ibalpha是GP Ib-IX-V四种多肽中最大的一种。本研究的目的是在静态条件和高流体剪切应力存在的情况下,研究GP Ibalpha的胞质结构域在GP Ib-IX-VWF相互作用中的作用。我们使用表达GP Ibbeta、GP IX以及野生型GP Ibalpha或缺失不同长度胞质结构域的GP Ibalpha突变体的中国仓鼠卵巢(CHO)细胞,在平行板流动腔中评估了在固定化VWF上的黏附以及流动驱动的细胞滚动。表达截断6 - 82个氨基酸的GP Ibalpha多肽的细胞比表达野生型GP Ibalpha的细胞滚动得更快。表达具有完整肌动蛋白结合蛋白280结合位点(截断至610个残基中的582个)的多肽的细胞比表达截断更长的GP Ibalpha的细胞滚动得更慢。表达截断的GP Ibalpha突变体的细胞的滚动速度随着VWF包被密度的降低而增加。此外,一部分截断的细胞在较低的VWF密度下表现出跳跃式移位。使用激光镊子测量其中三个突变体的GP Ibalpha-VWF键强度的研究表明,胞质结构域的逐步缺失导致单个GP Ibalpha-VWF键的强度逐渐减弱。