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人类RH50基因剪接突变导致的调节型Rh缺乏症。

Rh-deficiency of the regulator type caused by splicing mutations in the human RH50 gene.

作者信息

Chérif-Zahar B, Matassi G, Raynal V, Gane P, Delaunay J, Arrizabalaga B, Cartron J P

机构信息

INSERM U76, Institut National de la Transfusion Sanguine, Paris, France.

出版信息

Blood. 1998 Oct 1;92(7):2535-40.

PMID:9746795
Abstract

The Rh polypeptides and the glycoproteins Rh50, CD47, LW, and glycophorin B, which interact in the red blood cell membrane to form a multisubunit complex, are lacking or are severely reduced in the Rh-deficiency syndrome. We previously reported that in several Rhnull patients the RH50 gene was altered at the coding sequence level, resulting in either a single amino acid substitution or the synthesis of a truncated polypeptide. In the present report, we have detected two mutations in the intronic region of the RH50 gene that identify a new molecular mechanism involved in Rh-deficiency. The first mutation affected the invariant G residue of the 3' acceptor splice-site of intron 6, causing the skipping of the downstream exon and the premature termination of translation. The second mutation occurred at the first base of the 5' donor splice-site of intron 1. Both these mutations were found in homozygote state. RNase protection assays demonstrated that the Rh50 mRNA level was strongly reduced or undetectable in the 3' and 5' splice mutants, respectively. The different mutations affecting the RH50 gene are indicative of an heterogeneous mutational pattern, which further supports the hypothesis that the lack of the Rh50 protein may prevent the assembly or transport of the Rh membrane complex to the red blood cell surface.

摘要

Rh多肽以及糖蛋白Rh50、CD47、LW和血型糖蛋白B在红细胞膜中相互作用形成一个多亚基复合体,而在Rh缺乏综合征中这些物质缺失或严重减少。我们之前报道过,在一些Rh阴性患者中,RH50基因在编码序列水平发生改变,导致单个氨基酸替换或截短多肽的合成。在本报告中,我们在RH50基因的内含子区域检测到两个突变,这确定了一种与Rh缺乏相关的新分子机制。第一个突变影响内含子6的3' 剪接受体位点的不变G残基,导致下游外显子跳跃和翻译提前终止。第二个突变发生在内含子1的5' 剪接供体位点的第一个碱基处。这两个突变均以纯合子状态被发现。核糖核酸酶保护分析表明,在3' 和5' 剪接突变体中,Rh50 mRNA水平分别大幅降低或无法检测到。影响RH50基因的不同突变表明存在异质性突变模式,这进一步支持了以下假说:Rh50蛋白的缺失可能会阻止Rh膜复合体组装或转运至红细胞表面。

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