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糖基磷脂酰肌醇锚定蛋白α-血管性血友病因子(GPIbalpha-VWF)连接键内在特性的改变决定了血小板型血管性血友病疾病突变Gly233Val的动力学。

Alterations in the intrinsic properties of the GPIbalpha-VWF tether bond define the kinetics of the platelet-type von Willebrand disease mutation, Gly233Val.

作者信息

Doggett Teresa A, Girdhar Gaurav, Lawshe Avril, Miller Jonathan L, Laurenzi Ian J, Diamond Scott L, Diacovo Thomas G

机构信息

Division of Newborn Medicine, Department of Pediatrics, Washington University School of Medicine, 660 S Euclid Ave, Campus Box 8208, St Louis, MO 93110, USA.

出版信息

Blood. 2003 Jul 1;102(1):152-60. doi: 10.1182/blood-2003-01-0072. Epub 2003 Mar 13.

Abstract

Platelet-type von Willebrand disease (PTVWD) is a bleeding disorder in which an increase of function mutation in glycoprotein Ibalpha (GPIbalpha), with respect to binding of von Willebrand factor (VWF), results in a loss of circulating high molecular weight VWF multimers together with a mild-moderate thrombocytopenia. To better ascertain the specific perturbations in adhesion associated with this disease state, we performed a detailed analysis of the kinetic and mechanical properties of tether bonds formed between PT-VWD platelets and the A1-domain of VWF. Results indicate that the GPIbalpha mutation, Gly233Val, promotes and stabilizes platelet adhesion to VWF at shear rates that do not support binding between the native receptor-ligand pair due to enhanced formation and increased longevity of the mutant tether bond (k0 off values for mutant versus native complex of 0.67 +/- 0.11 s-1 and 3.45 +/- 0.37 s-1, respectively). By contrast, the sensitivity of this interaction to an applied force, a measure of bond strength, was similar to the wild-type (WT) receptor. Although the observed alterations in the intrinsic properties of the GPIbalpha-VWF tether bond are comparable to those reported for the type 2B VWD, distinct molecular mechanisms may be responsible for these function-enhancing bleeding disorders, as interactions between the mutant receptor and mutant ligand resulted in a greater stability in platelet adhesion. We speculate that the enhanced cellular on-rate together with the prolongation in the lifetime of the mutant receptor-ligand bond contributes to platelet aggregation in circulating blood by permitting the formation of multiple GPIbalpha-VWF-A1 interactions.

摘要

血小板型血管性血友病(PTVWD)是一种出血性疾病,其中糖蛋白Ibalpha(GPIbalpha)的功能突变增加,相对于血管性血友病因子(VWF)的结合,导致循环中的高分子量VWF多聚体丢失以及轻度至中度血小板减少。为了更好地确定与这种疾病状态相关的粘附特异性扰动,我们对PT-VWD血小板与VWF的A1结构域之间形成的系链键的动力学和力学性质进行了详细分析。结果表明,GPIbalpha突变体Gly233Val在剪切速率下促进并稳定血小板与VWF的粘附,由于突变体系链键的形成增强和寿命增加,该剪切速率不支持天然受体-配体对之间的结合(突变体与天然复合物之比的k0 off值分别为0.67 +/- 0.1 s-1和3.45 +/- 0.37 s-1)。相比之下,这种相互作用对施加力的敏感性(一种键强度的测量)与野生型(WT)受体相似。尽管观察到的GPIbalpha-VWF系链键内在性质的改变与2B型VWD报道的改变相当,但不同的分子机制可能是这些功能增强性出血性疾病的原因,因为突变受体与突变配体之间的相互作用导致血小板粘附具有更大的稳定性。我们推测,突变受体-配体键寿命的延长以及细胞结合速率的提高,通过允许形成多个GPIbalpha-VWF-A1相互作用,有助于循环血液中的血小板聚集。

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