Hwang D Y, Cohen J B
Department of Molecular Genetics and Biochemistry, University of Pittsburgh School of Medicine, Pennsylvania 15261, USA.
Mol Cell Biol. 1997 Dec;17(12):7099-107. doi: 10.1128/MCB.17.12.7099.
Both experimental work and surveys of the lengths of internal exons in nature have suggested that vertebrate internal exons require a minimum size of approximately 50 nucleotides for efficient inclusion in mature mRNA. This phenomenon has been ascribed to steric interference between complexes involved in recognition of the splicing signals at the two ends of short internal exons. To determine whether U1 small nuclear ribonucleoprotein, a multicomponent splicing factor that is involved in the first recognition of splice sites, contributes to the lower size limit of vertebrate internal exons, we have taken advantage of our previous observation that U1 small nuclear RNAs (snRNAs) which bind upstream or downstream of the 5' splice site (5'SS) stimulate splicing of the upstream intron. By varying the position of U1 binding relative to the 3'SS, we show that U1-dependent splicing of the upstream intron becomes inefficient when U1 is positioned 48 nucleotides or less downstream of the 3'SS, suggesting a minimal distance between U1 and the 3'SS of approximately 50 nucleotides. This distance corresponds well to the suggested minimum size of internal exons. The results of experiments in which the 3'SS region of the reporter was duplicated suggest an optimal distance of greater than 72 nucleotides. We have also found that inclusion of a 24-nucleotide miniexon is promoted by the binding of U1 to the downstream intron but not by binding to the 5'SS. Our results are discussed in the context of models to explain constitutive splicing of small exons in nature.
实验研究以及对天然内部外显子长度的调查均表明,脊椎动物的内部外显子要有效纳入成熟mRNA中,其大小至少需要约50个核苷酸。这种现象被归因于参与识别短内部外显子两端剪接信号的复合物之间的空间干扰。为了确定U1小核核糖核蛋白(一种参与剪接位点首次识别的多组分剪接因子)是否对脊椎动物内部外显子的下限大小有影响,我们利用了之前的观察结果,即结合在5'剪接位点(5'SS)上游或下游的U1小核RNA(snRNA)可刺激上游内含子的剪接。通过改变U1相对于3'SS的结合位置,我们发现当U1位于3'SS下游48个核苷酸或更少时,上游内含子的U1依赖性剪接效率会降低,这表明U1与3'SS之间的最小距离约为50个核苷酸。这个距离与所建议的内部外显子最小大小非常吻合。对报告基因的3'SS区域进行重复的实验结果表明,最佳距离大于72个核苷酸。我们还发现,U1与下游内含子结合可促进24个核苷酸的微型外显子的纳入,但与5'SS结合则无此作用。我们将在解释自然界中小外显子组成型剪接的模型背景下讨论我们的结果。