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Intron cleavage affects processing of alternatively spliced transcripts.

机译:内含子切割影响选择性剪接的转录物的加工。

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摘要

We previously showed that the insertion of a hammerhead ribozyme (Rz) in a critical intronic position between the EDA exon and a downstream regulatory element affects alternative splicing. Here we evaluate the effect of other intronic cotranscriptional cleavage events on alternative pre-mRNA processing using different ribozymes (Rz) and Microprocessor target sequences (MTSs). In the context of the fibronectin EDA minigene, intronic MTSs were cleaved very inefficiently and did not affect alternative splicing or the level of mature transcripts. On the contrary, all hammerhead Rz derivatives and hepatitis delta Rz were completely cleaved before a splicing decision and able to affect alternative splicing. Despite the very efficient Rz-mediated cleavage, the levels of mature mRNA were only reduced to approximately 40%. We show that this effect on mature transcripts occurs regardless of the type and intronic position of Rzs, or changes in alternative splicing and exon definition. Thus, we suggest that intron integrity is not strictly required for splicing but is necessary for efficient pre-mRNA biosynthesis.
机译:我们以前表明,在EDA外显子和下游调控元件之间的关键内含子位置插入锤头状核酶(Rz)会影响其他剪接。在这里,我们评估使用不同的核酶(Rz)和微处理器目标序列(MTS)的其他内含子共转录裂解事件对替代性pre-mRNA处理的影响。在纤连蛋白EDA小基因的背景下,内含子MTS的切割效率非常低,并且不影响其他剪接或成熟转录本的水平。相反,所有锤头状Rz衍生物和丙型肝炎三角洲Rz均已在进行剪接决定之前完全裂解,并能够影响其他剪接。尽管非常有效的Rz介导的裂解,成熟的mRNA的水平只降低到约40%。我们表明,无论Rzs的类型和内含子位置如何,或替代剪接和外显子定义的变化,都会对成熟转录本产生这种影响。因此,我们建议内含子完整性不是严格要求剪接,但对于有效的pre-mRNA生物合成而言是必需的。

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