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Mutations in the U5 snRNA result in altered splicing of subsets of pre-mRNAs and reduced stability of Prp8

机译:U5 snRNA中的突变导致前mRNA子集的剪接发生改变并降低Prp8的稳定性

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摘要

The U5 snRNA loop 1 aligns the 5′ and 3′ exons for ligation during the second step of pre-mRNA splicing. U5 is intimately associated with Prp8, which mediates pre-mRNA repositioning within the catalytic core of the spliceosome and interacts directly with U5 loop 1. The genome-wide effect of three U5 loop 1 mutants has been assessed by microarray analysis. These mutants exhibited impaired and improved splicing of subsets of pre-mRNAs compared to wild-type U5. Analysis of pre-mRNAs that accumulate revealed a change in base prevalence at specific positions near the splice sites. Analysis of processed pre-mRNAs exhibiting mRNA accumulation revealed a bias in base prevalence at one position within the 5′ exon. While U5 loop 1 can interact with some of these positions the base bias is not directly related to sequence changes in loop 1. All positions that display a bias in base prevalence are at or next to positions known to interact with Prp8. Analysis of Prp8 in the presence of the three U5 loop 1 mutants revealed that the most severe mutant displayed reduced Prp8 stability. Depletion of U5 snRNA in vivo also resulted in reduced Prp8 stability. Our data suggest that certain mutations in U5 loop 1 perturb the stability of Prp8 and may affect interactions of Prp8 with a subset of pre-mRNAs influencing their splicing. Therefore, the integrity of U5 is important for the stability of Prp8 during splicing and provides one possible explanation for why U5 loop 1 and Prp8 are so highly conserved.
机译:U5 snRNA环1将5'和3'外显子对齐以在mRNA前剪接的第二步进行连接。 U5与Prp8密切相关,Prp8介导剪接体催化核心内的mRNA前重新定位并直接与U5环1相互作用。已通过微阵列分析评估了三个U5环1突变体的全基因组效应。与野生型U5相比,这些突变体的前mRNA子集的剪接受损且改善。对积累的前mRNA的分析显示,剪接位点附近特定位置的碱基患病率发生了变化。分析显示mRNA积累的加工前mRNA,发现在5'外显子中一个位置的碱基发生率存在偏差。尽管U5回路1可以与这些位置中的某些相互作用,但碱基偏倚并不与回路1中的序列变化直接相关。所有显示碱基普遍性偏倚的位置都位于已知与Prp8相互作用的位置或附近。在三个U5 loop 1突变体的存在下对Prp8的分析表明,最严重的突变体显示出降低的Prp8稳定性。体内U5 snRNA的消耗也导致Prp8稳定性降低。我们的数据表明,U5环1中的某些突变会扰乱Prp8的稳定性,并可能影响Prp8与影响其剪接的部分pre-mRNA的相互作用。因此,U5的完整性对于拼接过程中Prp8的稳定性很重要,并为为什么U5环路1和Prp8如此高度保守提供了一种可能的解释。

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