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Exon sequences at the splice junctions affect splicing fidelity and alternative splicing

机译:剪接点的外显子序列影响剪接保真度和选择性剪接

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Identification of splice sites is essential for the expression of most eukaryotic genes, allowing accurate splicing of pre-mRNAs. The splice sites are recognized by the splicing machinery based on sequences within the pre-mRNA. Here, we show that the exon sequences at the splice junctions play a significant, previously unrecognized role in the selection of 3' splice sites during the second step of splicing. The influence of the exon sequences was enhanced by the Prp18 mutant Prp18ΔCR, and the strength of an exon sequence in Prp18ΔCR splicing predicted its effect in wild-type splicing. Analysis of the kinetics of splicing in vitro demonstrated that 3' splice sites were chosen competitively during the second step, likely at the same time as exon ligation. In wild-type yeast, splice site selection for two genes studied was altered by point mutations in their exon bases, affecting splicing fidelity and alternative splicing. Finally, we note that the degeneracy of the genetic code allows competing 3' splice sites to be eliminated from coding regions, and we suggest that the evolution of the splicing signals and the genetic code are connected.
机译:剪接位点的鉴定对于大多数真核基因的表达是必不可少的,从而可以准确剪接前mRNA。剪接位点由剪接机器基于前mRNA中的序列识别。在这里,我们显示在剪接的第二步中,剪接点处的外显子序列在选择3'剪接位点时发挥了重要的,以前未被认识的作用。 Prp18突变体Prp18ΔCR增强了外显子序列的影响,Prp18ΔCR剪接中外显子序列的强度预测了其在野生型剪接中的作用。体外剪接动力学的分析表明,在第二步中竞争性选择了3'剪接位点,可能与外显子连接相同。在野生型酵母中,研究的两个基因的剪接位点选择因其外显子碱基的点突变而改变,从而影响剪接保真度和选择性剪接。最后,我们注意到遗传密码的简并性使得竞争的3'剪接位点可以从编码区域中消除,并且我们建议剪接信号的进化与遗传密码是相关的。

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