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分子遗传学分析 ABO 血型变异揭示了 29 个新的 ABO 亚群等位基因。

Molecular genetic analysis of ABO blood group variations reveals 29 novel ABO subgroup alleles.

机构信息

Blood Group Reference Laboratory, Shanghai Institute of Blood Transfusion, Shanghai Blood Center; Blood Transfusion Department, Ruijin Hospital, Medical School of Shanghai Jiao Tong University, Shanghai, China; Blood Group Laboratory, Tanggu Blood Center, Tianjin, China.

出版信息

Transfusion. 2013 Nov;53(11 Suppl 2):2910-6. doi: 10.1111/trf.12168. Epub 2013 Mar 22.

Abstract

BACKGROUND

Identifying genetic variants of the ABO gene may reveal new biologic mechanisms underlying variant phenotypes of the ABO blood group. We report the molecular genetic analysis of 322 apparently unrelated ABO subgroup individuals in an estimated 2.1 million donors.

STUDY DESIGN AND METHODS

We performed phenotype investigations by serology studies, analyzed the DNA sequence of the ABO gene by direct sequencing or sequencing after cloning, and evaluated promoter activity by reporter assays.

RESULTS

In 62 rare ABO alleles, we identified 29 novel ABO subgroup alleles in 43 apparently unrelated subgroup individuals and their four available pedigrees. Of these alleles, one was a deletion-mutation allele, four were hybrid alleles, and 24 were point-mutation alleles. Most of the point mutations were detected in Exons 6 to 7, while several others were also detected in Exons 1 to 5 or splicing regions. One ABO promoter mutation, -35 to -18 del, was found and verified to reduce promoter activity, as determined by dual luciferase assays. Two mutations, 7G>T and 52C>T, carrying the premature terminal codons E3X and R18X in the 5'-region, were found to be associated with the very weak ABO subgroups "Ael" and "Bel."

CONCLUSION

Twenty-nine ABO subgroup alleles were newly linked to different kinds of ABO variations. We provide the first evidence that promoter abnormality is involved in the formation of weak ABO phenotypes. We also described the first naturally occurring ABO alleles with premature terminal codons in the 5'-region that led to Ael and Bel phenotypes.

摘要

背景

鉴定 ABO 基因的遗传变异可能揭示 ABO 血型表型变异的新生物学机制。我们报告了在估计有 210 万供体的 322 名明显无关的 ABO 亚组个体中进行的分子遗传学分析。

研究设计和方法

我们通过血清学研究进行表型研究,通过直接测序或克隆后测序分析 ABO 基因的 DNA 序列,并通过报告基因检测评估启动子活性。

结果

在 62 个罕见的 ABO 等位基因中,我们在 43 名明显无关的亚组个体及其四个可获得的家系中发现了 29 个新的 ABO 亚组等位基因。这些等位基因中,一个是缺失突变等位基因,四个是杂交等位基因,24 个是点突变等位基因。大多数点突变发生在 Exons 6 到 7,而其他一些也发生在 Exons 1 到 5 或剪接区域。发现并验证了一个 ABO 启动子突变 -35 到 -18 del,通过双荧光素酶检测确定其降低了启动子活性。发现并验证了两个突变,7G>T 和 52C>T,它们在 5' 区携带提前终止密码子 E3X 和 R18X,与非常弱的 ABO 亚组"Ael"和"Bel"相关。

结论

29 个 ABO 亚组等位基因与不同类型的 ABO 变异相关。我们首次提供了启动子异常参与形成弱 ABO 表型的证据。我们还描述了第一个在 5' 区具有提前终止密码子的天然存在的 ABO 等位基因,导致 Ael 和 Bel 表型。

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