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Splice-Junction Elements and Intronic Sequences Regulate Alternative Splicing of the Drosophila Myosin Heavy Chain Gene Transcript

机译:剪接元件和内含子序列调节果蝇肌球蛋白重链基因转录本的选择性剪接。

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摘要

The Drosophila muscle myosin heavy chain (Mhc) gene primary transcript contains five alternatively spliced exon groups (exons 3, 7, 9, 11 and 15), each of which contains two to five mutually exclusive members. Individual muscles typically select a specific alternative exon from each group for incorporation into the processed message. We report here on the cis-regulatory mechanisms that direct the processing of alternative exons in Mhc exon 11 in individual muscles using transgenic reporter constructs, RT-PCR and directed mutagenesis. The 6.0-kilobase exon 11 domain is sufficient to direct the correct processing of exon 11 alternatives, demonstrating that the alternative splicing cis-regulatory elements are local to Mhc exon 11. Mutational analysis of Mhc exon 11 reveals that the alternative exon nonconsensus 5'-splice donors are essential for alternative splicing regulation in general, but do not specify alternative exons for inclusion in individual muscles. Rather, we show, through exon substitutions and deletion analyses, that a 360-nucleotide intronic domain precisely directs the normal processing of one exon, Mhc exon 11e, in the indirect flight muscle. These and other data indicate that alternative exons are regulated in appropriate muscles through interactions between intronic alternative splice-specificity elements, nonconsensus exon 11 splice donors and, likely, novel exon-specific alternative splicing factors.
机译:果蝇肌肉肌球蛋白重链(Mhc)基因初级转录本包含五个交替剪接的外显子组(外显子3、7、9、11和15),每个组包含2至5个互斥的成员。个别肌肉通常会从每组中选择特定的替代外显子,以整合到已处理的消息中。我们在这里报告有关顺式调控机制,该机制指导使用转基因报道基因构建体,RT-PCR和定向诱变在单个肌肉中Mhc外显子11中替代外显子的加工。 6.0碱基对的第11外显子域足以指导第11外显子的正确处理,表明其他剪接的顺式调控元件是Mhc外显子11的局部突变。对Mhc外显子11的突变分析表明,其他外显子未达成共识5'-剪接供体通常是替代剪接调控必不可少的,但没有指定替代性外显子包含在单个肌肉中。相反,我们通过外显子取代和缺失分析显示,一个360个核苷酸的内含子域可直接指导间接飞行肌肉中一个外显子Mhc外显子11e的正常加工。这些和其他数据表明,通过内含子替代剪接特异性元件,非共有性外显子11剪接供体以及可能是新型外显子特异性替代剪接因子之间的相互作用,可调节适当的肌肉中的替代外显子。

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