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首页> 外文期刊>Transfusion: The Journal of the American Association of Blood Banks >New and unusual O alleles at the ABO locus are implicated in unexpected blood group phenotypes.
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New and unusual O alleles at the ABO locus are implicated in unexpected blood group phenotypes.

机译:ABO基因位点的新的和异常的O等位基因与意料之外的血型表型有关。

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摘要

BACKGROUND: In the ABO blood group system mutations in the A gene may lead to weak A subgroups owing to a dysfunctional 3-alpha-N-acetylgalactosaminyltransferase. STUDY DESIGN AND METHODS: Blood and DNA were investigated to correlate weak A phenotypes with genotype, and an overrepresentation of the infrequent O2 allele was observed. Consequently, 57 available O2 alleles were examined in detail. RESULTS: Two new O2 alleles were identified having mutations resulting in Gly229Asp with or without Arg217Cys. A recently described O2 variant (488C>T; Thr163Met) was also found. Surprisingly, both the original and the variant O2 alleles were associated with either O or Aweak phenotypes. Three novel O alleles surfaced in six other samples with suspected A subgroups. These were A1-like alleles having nonsense mutations causing premature truncation at codons 56, 107, or 181. A second example of the rare O3 allele was also identified. A newly described O1 allele having 768C>A was found to be the third most frequentO allele among Swedish donors. Of the five novel O alleles, three were incorrectly interpreted as A1 following routine ABO genotyping. CONCLUSION: Apparent O alleles lacking 261delG may cause weak A expression on red blood cells and/or inhibit anti-A production. A hypothesis that exchange of genetic material between principally dissimilar O alleles during mitosis ("autologous chimerism") restores glycosyltransferase activity in some cells would explain this interesting phenomenon.
机译:背景:在ABO血型系统中,由于功能异常的3-α-N-乙酰基半乳糖胺基转移酶,A基因突变可能导致A亚组弱化。研究设计与方法:研究了血液和DNA,将弱A型与基因型相关联,并观察到罕见的O2等位基因过多。因此,详细检查了57个可用的O2等位基因。结果:确定了两个新的O2等位基因,它们具有突变,导致带有或不带有Arg217Cys的Gly229Asp。还发现了最近描述的O2变体(488C> T; Thr163Met)。令人惊讶的是,原始和变异的O2等位基因均与O或Aweak表型相关。在其他六个带有可疑A亚组的样本中出现了三个新的O等位基因。这些是具有无义突变的A1样等位基因,会在56、107或181位密码子处被提前截断。还发现了罕见的O3等位基因的第二个例子。发现新描述的具有768C> A的O1等位基因是瑞典捐赠者中第三高频率的O等位基因。在常规的ABO基因分型后,五个新的O等位基因中,有三个被错误地解释为A1。结论:缺乏261delG的明显O等位基因可能会导致红细胞A弱表达和/或抑制抗A产生。在有丝分裂期间“主要不同的” O等位基因之间的遗传物质交换(“自体嵌合”)恢复某些细胞中糖基转移酶活性的假说将解释这种有趣的现象。

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