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剪接体突变使3'剪接位点保真度与细胞适应性脱钩。

Spliceosomal mutations decouple 3' splice site fidelity from cellular fitness.

作者信息

Roy Kevin R, Gabunilas Jason, Neutel Dean, Ai Michelle, Samson Joyce, Lyu Guochang, Chanfreau Guillaume F

出版信息

bioRxiv. 2023 Jan 12:2023.01.12.523824. doi: 10.1101/2023.01.12.523824.

Abstract

The fidelity of splice site selection is thought to be critical for proper gene expression and cellular fitness. In particular, proper recognition of 3'-splice site (3'SS) sequences by the spliceosome is a daunting task considering the low complexity of the 3'SS consensus sequence YAG. Here we show that inactivating the near-essential splicing factor Prp18p results in a global activation of alternative 3'SS, many of which harbor sequences that highly diverge from the YAG consensus, including some highly unusual non-AG 3'SS. We show that the role of Prp18p in 3'SS fidelity is promoted by physical interactions with the essential splicing factors Slu7p and Prp8p and synergized by the proofreading activity of the Prp22p helicase. Strikingly, structure-guided point mutations that disrupt Prp18p-Slu7p and Prp18p-Prp8p interactions mimic the loss of 3'SS fidelity without any impact on cellular growth, suggesting that accumulation of incorrectly spliced transcripts does not have a major deleterious effect on cellular viability. These results show that spliceosomes exhibit remarkably relaxed fidelity in the absence of Prp18p, and that new 3'SS sampling can be achieved genome-wide without a major negative impact on cellular fitness, a feature that could be used during evolution to explore new productive alternative splice sites.

摘要

剪接位点选择的保真度被认为对正确的基因表达和细胞适应性至关重要。特别是,考虑到3'-剪接位点(3'SS)共有序列YAG的低复杂性,剪接体对3'SS序列的正确识别是一项艰巨的任务。在这里,我们表明,使近乎必需的剪接因子Prp18p失活会导致替代3'SS的全局激活,其中许多含有与YAG共有序列高度不同的序列,包括一些非常不寻常的非AG 3'SS。我们表明,Prp18p在3'SS保真度中的作用通过与必需剪接因子Slu7p和Prp8p的物理相互作用得到促进,并由Prp22p解旋酶的校对活性协同作用。引人注目的是,破坏Prp18p-Slu7p和Prp18p-Prp8p相互作用的结构导向点突变模拟了3'SS保真度的丧失,而对细胞生长没有任何影响,这表明错误剪接转录本的积累对细胞活力没有重大有害影响。这些结果表明,在没有Prp18p的情况下,剪接体表现出明显宽松的保真度,并且可以在全基因组范围内实现新的3'SS采样,而对细胞适应性没有重大负面影响,这一特征可在进化过程中用于探索新的有效替代剪接位点。

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