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首页> 外文期刊>Molecular and Cellular Biology >A subset of SR proteins activates splicing of the cardiac troponin T alternative exon by direct interactions with an exonic enhancer.
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A subset of SR proteins activates splicing of the cardiac troponin T alternative exon by direct interactions with an exonic enhancer.

机译:SR蛋白的一个子集通过与外显子增强子的直接相互作用来激活心肌肌钙蛋白T替代外显子的剪接。

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The cardiac troponin T pre-mRNA contains an exonic splicing enhancer that is required for inclusion of the alternative exon 5. Here we show that enhancer activity is exquisitely sensitive to changes in the sequence of a 9-nucleotide motif (GAGGAAGAA) even when its purine content is preserved. A series of mutations that increased or decreased the level of exon inclusion in vivo were used to correlate enhancer strength with RNA-protein interactions in vitro. Analyses involving UV cross-linking and immunoprecipitation indicated that only four (SRp30a, SRp40, SRp55, and SRp75) of six essential splicing factors known as SR proteins bind to the active enhancer RNA. Moreover, purified SRp40 and SRp55 activate splicing of exon 5 when added to a splicing-deficient S100 extract. Purified SRp30b did not stimulate splicing in S100 extracts, which is consistent with its failure to bind the enhancer RNA. In vitro competition of SR protein splicing activity and UV cross-linking demonstrated that the sequence determinants for SR protein binding were precisely coincident with the sequence determinants of enhancer strength. Thus, a subset of SR proteins interacts directly with the exonic enhancer to promote inclusion of a poorly defined alternative exon. Independent regulation of the levels of SR proteins may, therefore, contribute to the developmental regulation of exon inclusion.
机译:心脏肌钙蛋白T pre-mRNA包含一个外显子剪接增强子,需要包含替代性外显子5。在这里,我们显示增强子活性对9个核苷酸基序(GAGGAAGAA)的​​序列变化非常敏感,即使其嘌呤是嘌呤内容被保留。一系列增加或减少体内外显子包涵体水平的突变被用于将增强子强度与体外RNA-蛋白质相互作用相关联。涉及紫外线交联和免疫沉淀的分析表明,被称为SR蛋白的六个基本剪接因子中只有四个(SRp30a,SRp40,SRp55和SRp75)与活性增强子RNA结合。此外,纯化的SRp40和SRp55当添加到缺乏剪接的S100提取物中时,会激活外显子5的剪接。纯化的SRp30b不会刺激S100提取物中的剪接,这与其无法结合增强子RNA一致。 SR蛋白剪接活性和紫外线交联的体外竞争表明,SR蛋白结合的序列决定因素与增强子强度的序列决定因素完全一致。因此,SR蛋白的子集直接与外显子增强子相互作用,以促进包含定义不清的替代外显子。因此,SR蛋白水平的独立调节可能有助于外显子包涵体的发育调节。

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