Tian H, Kole R
Department of Genetics, Center for Genetic and Cellular Therapies, Duke University, Durham, North Carolina 27710, USA.
J Biol Chem. 2001 Sep 7;276(36):33833-9. doi: 10.1074/jbc.M102957200. Epub 2001 Jul 13.
A modified method of cycled selection was used to characterize splicing enhancers for exon inclusion from a pool of beta-globin-based three exon/two intron pre-mRNAs with a variable number of random nucleotides incorporated in the internal exon. The pre-mRNAs generated by this method contained random sequences ranging from 0 to 18 nucleotides in length. This method was used to isolate particular splicing enhancer motifs from a previously enriched pool of extremely diverse enhancers. After four cycles of selection for mRNA containing the internal exon, a distinct enhancer motif (GACGAC...CAGCAG) was highly enriched. This motif served as strong splicing enhancers in a heterogeneous exon. We have shown here that the selected enhancer motif promotes exon inclusion through specific interaction with SRp30. We have also shown that although present in many of our selected splicing enhancers conforming to this motif, a typical purine-rich enhancer sequence is dispensable for either enhancer activity or binding with SRp30.
采用一种改良的循环选择方法,从一组基于β-珠蛋白的三外显子/两内含子前体mRNA中鉴定外显子包含的剪接增强子,这些前体mRNA的内部外显子中掺入了可变数量的随机核苷酸。通过该方法生成的前体mRNA包含长度从0到18个核苷酸的随机序列。此方法用于从先前富集的极其多样的增强子库中分离特定的剪接增强子基序。在对包含内部外显子的mRNA进行四轮选择后,一个独特的增强子基序(GACGAC...CAGCAG)高度富集。该基序在异质外显子中作为强剪接增强子发挥作用。我们在此表明,所选的增强子基序通过与SRp30的特异性相互作用促进外显子包含。我们还表明,尽管在许多符合该基序的所选剪接增强子中存在典型的富含嘌呤的增强子序列,但对于增强子活性或与SRp30的结合而言,该序列并非必需。