首页> 美国卫生研究院文献>Molecular and Cellular Biology >Base pairing at the 5 splice site with U1 small nuclear RNA promotes splicing of the upstream intron but may be dispensable for slicing of the downstream intron.
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Base pairing at the 5 splice site with U1 small nuclear RNA promotes splicing of the upstream intron but may be dispensable for slicing of the downstream intron.

机译:5剪接位点与U1小核RNA的碱基配对可促进上游内含子的剪接但对于下游内含子的剪接可能是不需要的。

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摘要

We previously reported that exon skipping in vivo due to point mutations in the 5' splice site (5'ss) signal of an internal mammalian exon can be prevented by coexpression of U1 small nuclear RNAs, termed shift-U1s, with complementarity to sequence upstream or downstream of the mutated site. We now show by S1 nuclease protection experiments that a typical shift-U1 restores splicing of the upstream intron, but not necessarily of the down stream intron. This indicates that the normal 5'ss sequence acts as an enhancer for splicing of the upstream intron, that it owes this activity to base pairing with U1, and that the enhancer activity is reproduced by base pairing of U1 with other sequences in the area. Shift-U1s are dispensable when the 3'ss sequence of the upstream intron is improved, which suggests that base pairing of U1 with sequences at or near the downstream end of the exon normally functions by compensating for a weakness in the upstream 3'ss. Accordingly, U1 appears to be involved in communication across the exon, but our data indicate at the same time that extensive base pairing between U1 and the 5'ss sequence is not necessary for accurate splicing of the downstream intron. These findings are discussed in relation to the coordinate selection exon termini proposed by the exon definition model.
机译:我们之前曾报道过,由于内部哺乳动物外显子的5'剪接位点(5's)信号中的点突变而导致的体内外显子跳跃可以通过共表达U1小核RNA(称为shift-U1s)来实现,并与上游序列互补或突变位点的下游。现在,我们通过S1核酸酶保护实验表明,典型的shift-U1恢复上游内含子的剪接,但不一定恢复下游内含子的剪接。这表明正常的5's序列可作为上游内含子剪接的增强子,它的活性归功于与U1的碱基配对,并且增强子的活性是通过U1与该区域中其他序列的碱基配对而再现的。当上游内含子的3's序列得到改善时,Shift-U1是可有可无的,这表明U1与外显子下游端或附近的序列的碱基配对通常通过补偿上游3's的弱点而正常发挥作用。因此,U1似乎参与了外显子的交流,但是我们的数据同时表明,U1和5's序列之间的广泛碱基配对对于下游内含子的精确剪接不是必需的。这些发现是关于外显子定义模型提出的坐标选择外显子末端的讨论。

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