Laboratoire de Génétique Moléculaire des Eucaryotes, Centre de Biotechnologie de Sfax, Tunisia.
Ann Hematol. 2010 Jan;89(1):75-81. doi: 10.1007/s00277-009-0763-1. Epub 2009 May 30.
GPIbα, GPIbβ, and GPIX are three candidate genes for a rare genetic bleeding disorder named Bernard Soulier syndrome (BSS). These genes are unique in the genome and encode for glycoprotein subunits of the GPIb-IX complex. Quantitative or qualitative deficiency in this complex is often associated with BSS. Here, we report the novel variant of BSS in which Ser23 of GPIbβ is substituted by a Stop codon causing a premature termination of translation, recently described in one family. This genetic defect is revealed in three unrelated BSS patients. The pedigree was determined for two families (F1 and F2) and revealed the homozygosity of the mutation in the two patients and its heterozygosity in parents. In the third family, the patient DNA was heterozygote with the same Ser23 Stop mutation in addition to two missense heterozygote mutations (Asp 51 Gly) and (Ala 55 to Pro). We studied the effect of the Ser23 Stop mutation on the expression of the complex. Our findings confirm that the identified GPIbβ mutation is responsible for the BSS phenotype and hampers the GPIb-IX complex to form on the platelets' surface. Regarding the scarcity of the BSS syndrome, the occurrence of the same mutation in three unrelated families would suggest a BSS founder mutation in Tunisia.
GPIbα、GPIbβ 和 GPIX 是一种名为伯纳德-苏利耶综合征(BSS)的罕见遗传性出血性疾病的候选基因。这些基因在基因组中是独特的,编码 GPIb-IX 复合物的糖蛋白亚基。该复合物的数量或质量缺陷通常与 BSS 相关。在这里,我们报告了一种新的 BSS 变异,其中 GPIbβ 的 Ser23 被一个终止密码子取代,导致翻译过早终止,最近在一个家族中描述过。这种遗传缺陷在三个无关的 BSS 患者中显现出来。对两个家族(F1 和 F2)进行了家系分析,揭示了两个患者的突变纯合性及其父母的突变杂合性。在第三个家族中,患者的 DNA 是杂合子,除了两个错义杂合突变(Asp51Gly)和(Ala55Pro)外,还带有相同的 Ser23 终止突变。我们研究了 Ser23 终止突变对复合物表达的影响。我们的发现证实,鉴定出的 GPIbβ 突变是导致 BSS 表型的原因,并阻碍了 GPIb-IX 复合物在血小板表面的形成。鉴于 BSS 综合征的罕见性,在三个无关家族中出现相同的突变提示突尼斯存在 BSS 创始突变。