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一名患有变异型Glanzmann血小板无力症患者的β3亚基天冬氨酸217位点替换为缬氨酸,这严重影响整合素αIIBβ3的功能。

A beta3 Asp217-->Val substitution in a patient with variant Glanzmann Thrombasthenia severely affects integrin alphaIIBbeta3 functions.

作者信息

D'Andrea Giovanna, Bafunno Valeria, Del Vecchio Luigi, Amoriello Aldo, Morabito Paolo, Vecchione Gennaro, Grandone Elvira, Margaglione Maurizio

机构信息

Medical Genetics, Department of Biomedical Science, University of Foggia, Viale Luigi Pinto 7, Foggia, Italy.

出版信息

Blood Coagul Fibrinolysis. 2008 Oct;19(7):657-62. doi: 10.1097/MBC.0b013e3283048e42.

Abstract

A dysfunctional Glanzmann Thrombasthenia (variant) is a rare bleeding disorder due to qualitative abnormalities of platelets alphaIIBbeta3 heterodimers. Dynamically conformational change of alphaIIBbeta3 is a complex mechanism that is not fully understood. For these reasons, genotyping and functional analysis of variant Glanzmann Thrombasthenia is important to elucidate the molecular basis of alphaIIBbeta3 receptor functions. In this report, we have analyzed the molecular effects of an A>T substitution leading to an amino acid change, D217>V, in the beta3 integrin gene identified in patients with variant Glanzmann Thrombasthenia. As the D217 residue is highly conserved among all seven beta integrin subunits and among beta3 integrins of different species, we tested the effect on the phenotype of the D217V mutation by cotransfecting the beta3 mutant (V217) or wild-type beta3 (D217) construct with the wild-type alphaIIb into eukaryotic Chinese hamster ovary cells. Levels of mutant alphaIIBbeta3 heterodimers on Chinese hamster ovary cell surface were lightly reduced as compared with the wild type. Functional investigation of alphaIIBbeta3 V217 on Chinese hamster ovary cell surface was carried out, as fibrinogen binding, adhesion and aggregation tests showed a substantial reduction in respect to the control sample. Our results confirm ex-vivo data and suggest that the D217 amino acid is required for alphaIIBbeta3 receptor interactions with fibrinogen.

摘要

功能失调性血小板无力症(变异型)是一种罕见的出血性疾病,由血小板αIIBβ3异二聚体的质量异常引起。αIIBβ3的动态构象变化是一个复杂的机制,尚未完全了解。出于这些原因,对变异型血小板无力症进行基因分型和功能分析对于阐明αIIBβ3受体功能的分子基础很重要。在本报告中,我们分析了在变异型血小板无力症患者中鉴定出的β3整合素基因中导致氨基酸变化D217>V的A>T替换的分子效应。由于D217残基在所有七个β整合素亚基以及不同物种的β3整合素中高度保守,我们通过将β3突变体(V217)或野生型β3(D217)构建体与野生型αIIb共转染到真核中国仓鼠卵巢细胞中,测试了D217V突变对表型的影响。与野生型相比,中国仓鼠卵巢细胞表面突变型αIIBβ3异二聚体的水平略有降低。对中国仓鼠卵巢细胞表面的αIIBβ3 V217进行了功能研究,因为纤维蛋白原结合、粘附和聚集试验显示相对于对照样品有大幅降低。我们的结果证实了体外数据,并表明D217氨基酸是αIIBβ3受体与纤维蛋白原相互作用所必需的。

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