首页> 外文期刊>Transfusion: The Journal of the American Association of Blood Banks >A functional AQP1 allele producing a Co(a-b-) phenotype revises and extends the Colton blood group system.
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A functional AQP1 allele producing a Co(a-b-) phenotype revises and extends the Colton blood group system.

机译:产生Co(a-b-)表型的功能性AQP1等位基因修改并扩展了科尔顿血型系统。

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摘要

BACKGROUND: The Colton blood group system currently comprises three antigens, Co(a) , Co(b) , and Co3. The latter is only absent in the extremely rare individuals of the Colton "null" phenotype, usually referred to as Co(a-b-), which lack the water channel AQP1 that carries the Colton antigens. The discovery of a Co(a-b-) individual with no AQP1 deficiency suggested another molecular basis for the Co(a-b-) phenotype. STUDY DESIGN AND METHODS: Red blood cells were analyzed by stopped-flow light scattering and Western blotting and typed by hemagglutination and flow cytometry. Genotyping by sequencing and polymerase chain reaction-restriction fragment length polymorphism was applied. An expression system for Colton antigens was developed in mammalian cells. RESULTS: Although Co(a-b-), the proband expressed fully functional AQP1 and had developed a novel Colton alloantibody. Sequencing of AQP1 revealed a homozygous nucleotide change (140A>G) encoding the single-amino-acid substitution Q47R. A second case was identified due to the presence of this novel Colton alloantibody. By generating an expression system for Colton antigens in K-562 cells, the Q47R substitution was shown to inhibit the expression of both Co(a) and Co(b) antigens. Other naturally occurring single-amino-acid substitutions, that is, A45T, P38L, and N192K, were also studied in this Colton antigen expression system. CONCLUSIONS: The Co(a-b-) phenotype can be generated by a functional AQP1 allele, that is, AQP1 140G encoding AQP1 (Q47R) and allowing the development of a novel Colton alloantibody. This study also shows that the Co(b) antigen can be produced by at least two different substitutions at Amino Acid Position 45, that is, A45V and A45T.
机译:背景:科尔顿血型系统目前包含三种抗原,Co(a),Co(b)和Co3。后者仅在通常称为Co(a-b-)的科尔顿“空”表型的极少见的个体中不存在,这种个体缺乏携带科尔顿抗原的水通道AQP1。没有AQP1缺乏的Co(a-b-)个体的发现提示了Co(a-b-)表型的另一个分子基础。研究设计和方法:红血细胞通过停止流光散射和Western印迹进行分析,并通过血凝和流式细胞仪进行分型。应用测序和聚合酶链反应-限制性片段长度多态性进行基因分型。在哺乳动物细胞中开发了用于科尔顿抗原的表达系统。结果:尽管是Co(a-b-),但该先证者表达了全功能的AQP1,并开发了一种新型的Colton同种抗体。 AQP1的测序显示纯合的核苷酸变化(140A> G),编码单氨基酸取代Q47R。由于这种新型科尔顿同种抗体的存在,鉴定出第二例。通过为K-562细胞中的Colton抗原生成表达系统,Q47R取代可抑制Co(a)和Co(b)抗原的表达。在此Colton抗原表达系统中,还研究了其他天然存在的单氨基酸取代,即A45T,P38L和N192K。结论:Co(a-b-)表型可以由功能性AQP1等位基因产生,即编码AQP1(Q47R)的AQP1 140G,并允许开发新型Colton同种抗体。这项研究还表明,Co(b)抗原可以通过在氨基酸第45位的至少两个不同的取代产生,即A45V和A45T。

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