Price J V, Cech T R
Department of Chemistry and Biochemistry, University of Colorado, Boulder 80309.
Genes Dev. 1988 Nov;2(11):1439-47. doi: 10.1101/gad.2.11.1439.
Tetrahymena preribosomal RNA undergoes self-splicing in vitro. The structural components involved in recognition of the 5' splice site have been identified, but the mechanism by which the 3' splice site is recognized is not established. To identify some components of 3'splice site recognition, we have generated mutations near the 3' splice site and determined their effects on self-splicing. Alteration of the 3'-terminal guanosine of the intervening sequence (IVS), a conserved nucleotide in group I IVSs, almost eliminated 3' splice site activity; the IVS-3' exon splicing intermediate accumulated, and exon ligation was extremely slow. These mutations do not result in recruitment of cryptic 3' splice sites, in contrast to mutations that affect the 5' splice site. Alteration of the cytidine preceding the 3'-terminal guanosine or of the first two nucleotides of the 3' exon had similar but less severe effects on exon ligation. Most of the mutants showed some reduction (less than threefold) in GTP addition at the 5' splice site. A mutation that placed a new guanosine residue just upstream from the 3'-terminal guanosine misspliced to produce ligated exons with one extra nucleotide between the 5' and 3' exons. We conclude that multiple nucleotides, located both at the 3' end of the IVS and in the 3' exon, are required for 3' splice site recognition.
嗜热四膜虫前核糖体RNA在体外进行自我剪接。参与识别5'剪接位点的结构成分已被确定,但3'剪接位点的识别机制尚未明确。为了确定3'剪接位点识别的一些成分,我们在3'剪接位点附近产生了突变,并确定了它们对自我剪接的影响。间隔序列(IVS)3'末端鸟苷的改变,这是I组IVS中的一个保守核苷酸,几乎消除了3'剪接位点活性;IVS-3'外显子剪接中间体积累,外显子连接极其缓慢。与影响5'剪接位点的突变不同,这些突变不会导致隐蔽3'剪接位点的募集。3'末端鸟苷之前的胞嘧啶或3'外显子的前两个核苷酸的改变对外显子连接有类似但不太严重的影响。大多数突变体在5'剪接位点的GTP添加方面有一定程度的降低(小于三倍)。一个在3'末端鸟苷上游紧邻处引入一个新鸟苷残基的突变发生错误剪接,产生的连接外显子在5'和3'外显子之间有一个额外的核苷酸。我们得出结论,IVS的3'末端和3'外显子中的多个核苷酸对于3'剪接位点的识别是必需的。