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糖蛋白IX编码序列中的一个点突变(Cys73(TGT)突变为Tyr(TAT))导致两个患有伯纳德-索利尔综合征的家族中糖蛋白Ib/IX/V复合物的表面表达受损。

A point mutation in glycoprotein IX coding sequence (Cys73 (TGT) to Tyr(TAT)) causes impaired surface expression of GPIb/IX/V complex in two families with Bernard-Soulier syndrome.

作者信息

Noda M, Fujimura K, Takafuta T, Shimomura T, Fujii T, Katsutani S, Fujimoto T, Kuramoto A, Yamazaki T, Mochizuki T, Matsuzaki M, Sano M

机构信息

Department of Hematology and Oncology, Hiroshima University, Japan.

出版信息

Thromb Haemost. 1996 Dec;76(6):874-8.

PMID:8972003
Abstract

Bernard-Soulier syndrome (BSS) is a rare inherited bleeding disorder which is caused by abnormal expression or function of the glycoprotein (GP) Ib/IX/V complex, a platelet major receptor for von Willebrand factor. We studied four BSS patients in two unrelated families in which the same and novel mutation was found. Flow cytometric analysis showed that GPIX was completely absent but residual amounts of GPIb alpha and GPV were detectable in these patients. We analyzed all coding regions of GPIb alpha, GPIb beta, GPV and GPIX which were amplified from the patients' genomic DNA by the polymerase chain reaction (PCR). In all four cases, we identified a point mutation in the GPIX coding region that changes the codon for cysteine 73 (TGT) to a codon for tyrosine (TAT). Furthermore, we confirmed by a transient expression study that the mutation caused the loss of adequate surface expression of GPIX. Since cysteine might be important for the secondary structure, this mutation of GPIX gene would lead to a dramatic conformational change of GPIX protein, resulting in the reduced surface expression. We concluded that this novel point mutation of the GPIX gene was responsible for BSS in these families.

摘要

伯纳德-索利尔综合征(BSS)是一种罕见的遗传性出血性疾病,由糖蛋白(GP)Ib/IX/V复合物的异常表达或功能引起,该复合物是血小板对血管性血友病因子的主要受体。我们研究了两个无关家族中的四名BSS患者,在这两个家族中发现了相同的新突变。流式细胞术分析显示,这些患者中完全没有GPIX,但可检测到残余量的GPIbα和GPV。我们分析了通过聚合酶链反应(PCR)从患者基因组DNA中扩增出的GPIbα、GPIbβ、GPV和GPIX的所有编码区。在所有四个病例中,我们在GPIX编码区鉴定出一个点突变,该突变将半胱氨酸73(TGT)的密码子变为酪氨酸(TAT)的密码子。此外,我们通过瞬时表达研究证实,该突变导致GPIX的表面表达不足。由于半胱氨酸可能对二级结构很重要,GPIX基因的这种突变将导致GPIX蛋白发生显著的构象变化,从而导致表面表达减少。我们得出结论,GPIX基因的这种新的点突变是这些家族中BSS的病因。

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