Ohshima Y, Itoh M, Okada N, Miyata T
Proc Natl Acad Sci U S A. 1981 Jul;78(7):4471-4. doi: 10.1073/pnas.78.7.4471.
Nucleotide sequences of mammalian small nuclear RNAs (snRNAs) have been analyzed with a computer program for complementarity with sequences around a splice junction of various eukaryotic mRNA precursors (pre-mRNAs). A region in U2 RNA or some other snRNAs can form base pairs with both exons surrounding an intron of certain pre-mRNAs and, thereby, can align the two junctions leading to correct splicing of the pre-mRNA. These findings suggest that a snRNA such as U2 can be involved in splicing certain pre-mRNAs by pairing with exons, which we we call an "exon model" for splicing, as compared with the model involving U1 RNA presented by Lerner et al. [Lerner, M. R., Boyle, J. A., Mount, S. M., Wolin, S. L. & Steitz, J. A. (1980) Nature (London) 283, 220-224]. We constructed a secondary structure model of U1 RNA and studied the capacity of base pairing with pre-mRNAs on the basis of both primary and secondary structures of U1 RNA. We present an alternative model for splicing that involves U1 RNA, which assumes base pairing of noncontiguous regions of U1 RNA with an intron of a pre-mRNA. Pairing of an snRNA with exons could explain correct matching of the two junctions that bound one and the same intron, which is not explained by pairing with consensus sequences at the ends of an intron as proposed by Lerner et al. Pairing of an intron with U1 RNA and pairing of the surrounding exons with another snRNA such as U2 RNA could take place at the same time to insure specificity of splicing.
已使用计算机程序分析了哺乳动物小核RNA(snRNA)的核苷酸序列,以确定其与各种真核生物mRNA前体(前体mRNA)剪接连接周围序列的互补性。U2 RNA或其他一些snRNA中的一个区域可以与某些前体mRNA内含子周围的两个外显子形成碱基对,从而可以对齐两个连接点,导致前体mRNA的正确剪接。这些发现表明,诸如U2之类的snRNA可以通过与外显子配对参与某些前体mRNA的剪接,与Lerner等人提出的涉及U1 RNA的模型相比,我们将其称为剪接的“外显子模型”[Lerner, M. R., Boyle, J. A., Mount, S. M., Wolin, S. L. & Steitz, J. A. (1980) Nature (London) 283, 220 - 224]。我们构建了U1 RNA的二级结构模型,并基于U1 RNA的一级和二级结构研究了与前体mRNA的碱基配对能力。我们提出了一种涉及U1 RNA的剪接替代模型,该模型假设U1 RNA的非连续区域与前体mRNA的内含子进行碱基配对。snRNA与外显子的配对可以解释结合同一个内含子的两个连接点的正确匹配,这是Lerner等人提出的与内含子末端的共有序列配对所无法解释的。内含子与U1 RNA的配对以及周围外显子与另一种snRNA(如U2 RNA)的配对可以同时发生,以确保剪接的特异性。