Sébillon P, Beldjord C, Kaplan J C, Brody E, Marie J
Centre de Génétique Moléculaire, CNRS, Laboratoire Propre Associé à l'Université Pierre et Marie Curie, Gif-sur-Yvette, France.
Nucleic Acids Res. 1995 Sep 11;23(17):3419-25. doi: 10.1093/nar/23.17.3419.
In a patient with a beta-thalassemia intermedia, a mutation was identified in the second intron of the human beta-globin gene. The U-->G mutation is located within the polypyrimidine tract at position -8 upstream of the 3' splice site. In vivo, this mutation leads to decreased levels of the hemoglobin protein. Because of the location of the mutation and the role of the polypyrimidine tract in the splicing process, we performed in vitro splicing assays on the pre-messenger RNA (pre-mRNA). We found that the splicing efficiency of the mutant pre-mRNA is reduced compared to the wild type and that no cryptic splice sites are activated. Analysis of splicing complex formation shows that the U-->G mutation affects predominantly the progression of the H complex towards the pre-spliceosome complex. By cross-linking and immunoprecipitation assays, we show that the hnRNP C protein interacts more efficiently with the mutant precursor than with the wild-type. This stronger interaction could play a role, directly or indirectly, in the decreased splicing efficiency.
在一名中间型β地中海贫血患者中,在人β珠蛋白基因的第二个内含子中鉴定出一种突变。U→G突变位于3'剪接位点上游-8位的多嘧啶序列内。在体内,这种突变导致血红蛋白水平降低。由于突变的位置以及多嘧啶序列在剪接过程中的作用,我们对信使前体RNA(pre-mRNA)进行了体外剪接试验。我们发现,与野生型相比,突变型pre-mRNA的剪接效率降低,且没有隐蔽剪接位点被激活。剪接复合体形成分析表明,U→G突变主要影响H复合体向剪接体前体复合体的进展。通过交联和免疫沉淀试验,我们表明,异质性核糖核蛋白C(hnRNP C)蛋白与突变型前体的相互作用比与野生型的更有效。这种更强的相互作用可能直接或间接地在剪接效率降低中起作用。