首页> 美国卫生研究院文献>Nucleic Acids Research >Extended base pair complementarity between U1 snRNA and the 5′ splice site does not inhibit splicing in higher eukaryotes but rather increases 5′ splice site recognition
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Extended base pair complementarity between U1 snRNA and the 5′ splice site does not inhibit splicing in higher eukaryotes but rather increases 5′ splice site recognition

机译:U1 snRNA与5剪接位点之间扩展的碱基对互补性不会抑制高等真核生物中的剪接但会增加5剪接位点的识别

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摘要

Spliceosome formation is initiated by the recognition of the 5′ splice site through formation of an RNA duplex between the 5′ splice site and U1 snRNA. We have previously shown that RNA duplex formation between U1 snRNA and the 5′ splice site can protect pre-mRNAs from degradation prior to splicing. This initial RNA duplex must be disrupted to expose the 5′ splice site sequence for base pairing with U6 snRNA and to form the active spliceosome. Here, we investigated whether hyperstabilization of the U1 snRNA/5′ splice site duplex interferes with splicing efficiency in human cell lines or nuclear extracts. Unlike observations in Saccharomyces cerevisiae, we demonstrate that an extended U1 snRNA/5′ splice site interaction does not decrease splicing efficiency, but rather increases 5′ splice site recognition and exon inclusion. However, low complementarity of the 5′ splice site to U1 snRNA significantly increases exon skipping and RNA degradation. Although the splicing mechanisms are conserved between human and S.cerevisiae, these results demonstrate that distinct differences exist in the activation of the spliceosome.
机译:剪接体的形成是通过在5'剪接位点和U1 snRNA之间形成RNA双链体来识别5'剪接位点而开始的。我们以前已经表明,U1 snRNA和5'剪接位点之间的RNA双链体形成可以保护pre-mRNA免受剪接之前的降解。必须破坏此初始RNA双链体,以暴露5'剪接位点序列,以便与U6 snRNA进行碱基配对并形成活性剪接体。在这里,我们研究了U1 snRNA / 5'剪接位点双链体的超稳定化是否会干扰人类细胞系或核提取物中的剪接效率。与酿酒酵母中的观察结果不同,我们证明了扩展的U1 snRNA / 5'剪接位点相互作用不会降低剪接效率,而是会增加5'剪接位点识别和外显子包涵。然而,5'剪接位点与U1 snRNA的低互补性显着增加了外显子跳跃和RNA降解。尽管人与酿酒酵母之间的剪接机制是保守的,但这些结果表明剪接体的活化存在明显的差异。

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