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Trans-splicing of the mod(mdg4) Complex Locus Is Conserved Between the Distantly Related Species Drosophila melanogaster and D. virilis

机译:mod(mdg4)复杂基因座的反式剪接在近缘种果蝇和维氏梭菌之间是保守的。

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摘要

The modifier of mdg4, mod(mdg4), locus in Drosophila melanogaster represents a new type of complex gene in which functional diversity is resolved by mRNA trans-splicing. A protein family of >30 transcriptional regulators, which are supposed to be involved in higher-order chromatin structure, is encoded by both DNA strands of this locus. Mutations in mod(mdg4) have been identified independently in a number of genetic screens involving position-effect variegation, modulation of chromatin insulators, apoptosis, pathfinding of nerve cells, and chromosome pairing, indicating pleiotropic effects. The unusual gene structure and mRNA trans-splicing are evolutionary conserved in the distantly related species Drosophila virilis. Chimeric mod(mdg4) transcripts encoded from nonhomologous chromosomes containing the splice donor from D. virilis and the acceptor from D. melanogaster are produced in transgenic flies. We demonstrate that a significant amount of protein can be produced from these chimeric mRNAs. The evolutionary and functional conservation of mod(mdg4) and mRNA trans-splicing in both Drosophila species is furthermore demonstrated by the ability of D. virilis mod(mdg4) transgenes to rescue recessive lethality of mod(mdg4) mutant alleles in D. melanogaster.
机译:果蝇中mdg4,mod(mdg4),基因座的修饰符代表一种新型的复杂基因,其中功能多样性通过mRNA反式剪接得以解决。该位点的两条DNA链均编码一个> 30个转录调节因子的蛋白家族,该蛋白家族可能参与了高级染色质结构。 mod(mdg4)中的突变已在涉及位置效应杂色,染色质绝缘子调节,细胞凋亡,神经细胞寻路和染色体配对的许多遗传筛选中独立鉴定,表明多效性效应。在远缘种果蝇(Drosophila virilis)中,异常的基因结构和mRNA转拼是进化保守的。从非同源染色体编码的嵌合mod(mdg4)转录本包含转基因果蝇中产生,该非同源染色体包含维氏梭状芽孢杆菌的剪接供体和维拉氏褐藻的受体。我们证明,可以从这些嵌合mRNA中产生大量的蛋白质。此外,果蝇D. virilis mod(mdg4)转基因有能力挽救黑果果蝇mod(mdg4)突变等位基因的隐性杀伤力,进一步证明了果蝇物种中mod(mdg4)和mRNA反式剪接的进化和功能保守性。

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