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通过修饰的U1小核核糖核酸恢复地中海贫血β-珠蛋白前体信使核糖核酸的正确剪接

Restoration of correct splicing of thalassemic beta-globin pre-mRNA by modified U1 snRNAs.

作者信息

Gorman L, Mercatante D R, Kole R

机构信息

Lineberger Comprehensive Cancer Center and Department of Pharmacology, University of North Carolina, Chapel Hill, North Carolina 27599, USA.

出版信息

J Biol Chem. 2000 Nov 17;275(46):35914-9. doi: 10.1074/jbc.M006259200.

Abstract

The T-->G mutation at nucleotide 705 in the second intron of the beta-globin gene creates an aberrant 5' splice site and activates a 3' cryptic splice site upstream from the mutation. As a result, the IVS2-705 pre-mRNA is spliced via the aberrant splice sites leading to a deficiency of beta-globin mRNA and protein and to the genetic blood disorder thalassemia. We have shown previously that in cell culture models of thalassemia, aberrant splicing of beta-thalassemic IVS2-705 pre-mRNA was permanently corrected by a modified murine U7 snRNA that incorporated sequences antisense to the splice sites activated by the mutation. To explore the possibility of using other snRNAs as vectors for antisense sequences, U1 snRNA was modified in a similar manner. Replacement of the U1 9-nucleotide 5' splice site recognition sequence with nucleotides complementary to the aberrant 5' splice site failed to correct splicing of IVS2-705 pre-mRNA. In contrast, U1 snRNA targeted to the cryptic 3' splice site was effective. A hybrid with a modified U7 snRNA gene under the control of the U1 promoter and terminator sequences resulted in the highest levels of correction (up to 70%) in transiently and stably transfected target cells.

摘要

β-珠蛋白基因第二内含子中第705位核苷酸处的T→G突变产生了一个异常的5'剪接位点,并激活了突变上游的一个3'隐蔽剪接位点。结果,IVS2-705前体mRNA通过异常剪接位点进行剪接,导致β-珠蛋白mRNA和蛋白质缺乏,进而引发遗传性血液疾病地中海贫血。我们之前已经表明,在地中海贫血的细胞培养模型中,通过掺入与突变激活的剪接位点反义序列的修饰小鼠U7 snRNA,可永久性纠正β-地中海贫血IVS2-705前体mRNA的异常剪接。为了探索使用其他snRNA作为反义序列载体的可能性,以类似方式对U1 snRNA进行了修饰。用与异常5'剪接位点互补的核苷酸替换U1的9核苷酸5'剪接位点识别序列,未能纠正IVS2-705前体mRNA的剪接。相反,靶向隐蔽3'剪接位点的U1 snRNA是有效的。在U1启动子和终止子序列控制下与修饰的U7 snRNA基因形成的杂种,在瞬时和稳定转染的靶细胞中产生了最高水平的纠正(高达70%)。

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