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涉及A4GALT调控上游区域的大片段缺失主要产生新的P1PK无效等位基因。

Large deletions involving the regulatory upstream regions of A4GALT give rise to principally novel P1PK-null alleles.

作者信息

Westman Julia S, Hellberg Asa, Peyrard Thierry, Thuresson Britt, Olsson Martin L

机构信息

Division of Hematology and Transfusion Medicine, Department of Laboratory Medicine, Lund University, Lund, Sweden.

出版信息

Transfusion. 2014 Jul;54(7):1831-5. doi: 10.1111/trf.12543. Epub 2014 Jan 14.

Abstract

BACKGROUND

Cells of the clinically important p histo-blood group phenotype lack P1, P(k) , and P glycosphingolipid antigens. All cases investigated so far are due to alterations in the 4-α-galactosyltransferase-encoding Exon 3 of A4GALT. Repetitive elements in the genome can mediate DNA rearrangements, the most abundant being the Alu family of repeats.

STUDY DESIGN AND METHODS

The aim of this study was to determine the genetic basis of three p samples with intact A4GALT open reading frames, using long-range polymerase chain reaction (PCR) and sequencing. In addition, transcript measurements were performed with quantitative PCR.

RESULTS

This is the first report of the p phenotype as the result of large deletions in A4GALT, comprising the proposed promoter and noncoding Exons 1 and 2a. The breakpoints were different in all three samples and revealed the presence of Alu or MIRb sequences directly flanking, or in close proximity to, all junctions. Furthermore, no A4GALT transcripts could be detected.

CONCLUSION

In summary, our data elucidate a new explanation underlying the p phenotype, implicating the deleted regions of A4GALT as crucial for P1 and P(k) synthesis, possibly due to loss of binding sites for erythroid transcription factors. Furthermore, analysis of these regions will improve genetic blood group prediction.

摘要

背景

具有临床重要意义的p组织血型表型的细胞缺乏P1、P(k)和P糖鞘脂抗原。迄今为止所研究的所有病例均归因于编码4-α-半乳糖基转移酶的A4GALT外显子3的改变。基因组中的重复元件可介导DNA重排,其中最丰富的是Alu重复序列家族。

研究设计与方法

本研究的目的是使用长程聚合酶链反应(PCR)和测序来确定三个A4GALT开放阅读框完整的p样本的遗传基础。此外,用定量PCR进行转录本测量。

结果

这是首次报道p表型是由A4GALT中的大片段缺失所致,这些缺失包括推测的启动子以及非编码外显子1和2a。在所有三个样本中,断点均不相同,并且显示在所有连接点的直接侧翼或紧邻位置存在Alu或MIRb序列。此外,未检测到A4GALT转录本。

结论

总之,我们的数据阐明了p表型背后的一种新解释,表明A4GALT的缺失区域对P1和P(k)的合成至关重要,这可能是由于红系转录因子结合位点的丧失。此外,对这些区域的分析将改善血型的基因预测。

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