Tournamille C, Le Van Kim C, Gane P, Le Pennec P Y, Roubinet F, Babinet J, Cartron J P, Colin Y
INSERM U76, Institut National de la Transfusion Sanguine, Paris, France; the Centre National de Référence sur les Groupes sanguins, Paris, France; the Centre Régional de Transfusion Sanguine, Toulouse, France.
Blood. 1998 Sep 15;92(6):2147-56.
The Duffy (FY) blood group antigens are carried by the DARC glycoprotein, a widely expressed chemokine receptor. The molecular basis of the Fya/Fyb and Fy(a-b-) polymorphisms has been clarified, but little is known about the Fyx antigen and the FYX allele associated with weak expression of Fyb, Fy3, Fy5, and Fy6 antigens. We analyzed here the structure and expression of the FY gene in 4 Fy(a-bweak) individuals. As compared with Fy(a-b+) controls, the Fy(a-bweak) red blood cell membranes contained residual amount of DARC polypeptide and these cells were poorly bound by anti-Fy antibodies and chemokines. The FY gene from Fy(a-b+) and Fy(a-bweak) individuals differed by one substitution, C286T. The resulting Arg89Cys amino acid change reduced the binding of anti-Fy antibodies and chemokines to DARC transfectants. We concluded that the Fybweak donors carried the FYX allele at the FY locus and that the Fyx antigen corresponds to highly reduced expression of a grossly normal Fyb polypeptide caused by the Arg89Cys substitution. Because FY is a single copy gene, this defect should also affect DARC expression in nonerythroid cells. Because the Fyx phenotype is not associated with apparent clinical consequences, we discussed these findings in the light of the putative roles of DARC in various tissues. Finally, we developed a Fyx DNA typing assay that should be useful for genetic studies and clinical transfusion medicine.
达菲(FY)血型抗原由DARC糖蛋白携带,DARC是一种广泛表达的趋化因子受体。Fya/Fyb和Fy(a-b-)多态性的分子基础已被阐明,但对于与Fyb、Fy3、Fy5和Fy6抗原弱表达相关的Fyx抗原和FYX等位基因知之甚少。我们在此分析了4名Fy(a-b弱)个体中FY基因的结构和表达。与Fy(a-b+)对照相比,Fy(a-b弱)红细胞膜中含有残留量的DARC多肽,并且这些细胞与抗Fy抗体和趋化因子的结合较差。Fy(a-b+)和Fy(a-b弱)个体的FY基因存在一个C286T替换差异。由此产生的Arg89Cys氨基酸变化降低了抗Fy抗体和趋化因子与DARC转染子的结合。我们得出结论,Fyb弱供体在FY位点携带FYX等位基因,并且Fyx抗原对应于由Arg89Cys替换导致的大致正常的Fyb多肽的高度降低表达。由于FY是单拷贝基因,这种缺陷也应影响非红细胞中DARC的表达。由于Fyx表型与明显的临床后果无关,我们根据DARC在各种组织中的假定作用讨论了这些发现。最后,我们开发了一种Fyx DNA分型检测方法,该方法应有助于遗传研究和临床输血医学。