Koskela S, Kekomäki R, Partanen J
Finnish Red Cross Blood Transfusion Service, Helsinki.
Tissue Antigens. 1998 Sep;52(3):236-41. doi: 10.1111/j.1399-0039.1998.tb03038.x.
Platelet glycoproteins Ib beta (CD42c), IX (CD42a), and V (CD42d), together with GP Ib alpha (CD42b), form a receptor whose interaction with the von Willebrand factor is essential in the initial stages of haemostasis. Genetic variation in these proteins can cause alloimmunization leading to neonatal alloimmune thrombocytopenia and platelet transfusion refractoriness. Defective mutations cause a rare bleeding disorder, Bernard-Soulier syndrome. Only two antigenic polymorphisms have thus far been established in these proteins: the HPA-2 in GP Ib alpha and the rare Iy variant in GP Ib beta. Recently, we reported that only a limited degree of polymorphism can be found in the GP Ib alpha gene; the level of variation in the other components is not known. We therefore systematically screened polymorphism in the GP Ib beta, GP IX, and GP V genes in 50 unrelated Finnish blood donors. Nine polymorphic sites were found in the GP V gene, of which four changed the amino acid code and five were silent. The gene frequencies for substitutions Asp114Tyr, Met273Ile, Gly341Arg, and Leu397Arg were 1%, 1%, 2%, and 1% respectively. The five silent polymorphisms also had low frequencies, 1-4%. No polymorphism was found in the GP Ib beta gene and only one mutation was found in the 3' untranslated region of the GP IX gene. Our results indicate that genetic variation in the GP Ib/IX/V complex is mostly tolerated in the GP V protein--whose function in the complex is not clear whereas the other components have only very limited genetic polymorphism.
血小板糖蛋白Ibβ(CD42c)、IX(CD42a)和V(CD42d)与糖蛋白Ibα(CD42b)共同形成一种受体,其与血管性血友病因子的相互作用在止血的初始阶段至关重要。这些蛋白的基因变异可导致同种免疫,进而引起新生儿同种免疫性血小板减少症和血小板输注无效。缺陷性突变会导致一种罕见的出血性疾病,即伯纳德-索利尔综合征。迄今为止,在这些蛋白中仅发现了两种抗原多态性:糖蛋白Ibα中的HPA-2和糖蛋白Ibβ中罕见的Iy变异体。最近,我们报道在糖蛋白Ibα基因中仅发现有限程度的多态性;其他组分的变异水平尚不清楚。因此,我们系统地筛查了50名无关芬兰献血者的糖蛋白Ibβ、糖蛋白IX和糖蛋白V基因中的多态性。在糖蛋白V基因中发现了9个多态性位点,其中4个改变了氨基酸编码,5个为沉默突变。Asp114Tyr、Met273Ile、Gly341Arg和Leu397Arg替换的基因频率分别为1%、1%、2%和1%。这5个沉默多态性的频率也很低,为1%-4%。在糖蛋白Ibβ基因中未发现多态性,在糖蛋白IX基因的3'非翻译区仅发现1个突变。我们的结果表明,糖蛋白Ib/IX/V复合物中的基因变异在糖蛋白V蛋白中大多可被耐受,其在复合物中的功能尚不清楚,而其他组分仅具有非常有限的基因多态性。