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由于β-珠蛋白基因外显子突变导致的异常RNA加工。

Abnormal RNA processing due to the exon mutation of beta E-globin gene.

作者信息

Orkin S H, Kazazian H H, Antonarakis S E, Ostrer H, Goff S C, Sexton J P

出版信息

Nature. 1982 Dec 23;300(5894):768-9. doi: 10.1038/300768a0.

Abstract

As is typical of all beta-thalassaemias, the erythroid cells of individuals with the variant haemoglobin E (alpha 2 beta 2(26Glu leads to Lys)) exhibit a quantitative deficiency in their content of beta-globin (in this case beta E-globin) and its messenger RNA2,3. To determine the molecular basis of this phenotype, we have investigated the structure and expression of cloned beta E-globin genes. We report here that the complete nucleotide sequence of a beta E-gene revealed the expected GAG leads to AAG change in codon 26 but no other mutations. Expression of beta E-globin genes introduced into HeLa cells revealed two abnormalities of RNA processing: slow excision of intervening sequence-1 (IVS-1) and alternative splicing into exon-1 at a cryptic donor sequence within which the codon 26 nucleotide substitution resides. These results demonstrate a disturbance in the expression of the beta E-gene attributable solely to the exon mutation-a novel mechanism for gene dysfunction.

摘要

如同所有β地中海贫血的典型情况一样,携带变异血红蛋白E(α2β2(26Glu→Lys))的个体的红系细胞,其β珠蛋白(在此情况下为βE珠蛋白)及其信使RNA的含量存在定量缺陷2,3。为了确定这种表型的分子基础,我们研究了克隆的βE珠蛋白基因的结构和表达。我们在此报告,一个βE基因的完整核苷酸序列显示密码子26处预期的GAG→AAG变化,但无其他突变。导入HeLa细胞的βE珠蛋白基因的表达显示出RNA加工的两个异常:内含子序列-1(IVS-1)切除缓慢,以及在密码子26核苷酸替代所在的隐蔽供体序列处发生选择性剪接进入外显子-1。这些结果表明βE基因的表达紊乱仅归因于外显子突变——一种基因功能障碍的新机制。

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