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Trypanosome trans-splicing utilizes 2-5 branches and a corresponding debranching activity.

机译:锥虫转拼利用2-5分支和相应的脱支活性。

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摘要

The 5' ends of trypanosome mRNAs consist of an identical sequence of 39 nucleotides which is derived from a discrete transcript of approximately 140 nucleotides (medRNA). It has been proposed that generation of chimeric mRNAs in trypanosomes occurs by the process of trans-splicing involving medRNA and an acceptor RNA. Part of the basis for this suggestion comes from the ability of HeLa cell extracts (known to contain debranching activity) to catalyze the release of the intron portion of medRNA (minRNA) implying a Y-branched intermediate in the splicing process. Here we provide direct chemical analysis that miniRNA is attached to higher mol. wt RNA molecules by a 2'-5' phosphodiester bond (i.e. as a branched structure). We also demonstrate that trypanosomes have substantial amounts of debranching activity which is similar in nature to that of HeLa cells. These results provide further evidence for trans-splicing in trypanosomes and highlights its similarity to cis-splicing in other eukaryotes.
机译:锥虫mRNA的5'端由39个核苷酸的相同序列组成,该序列衍生自约140个核苷酸的离散转录本(medRNA)。已经提出,锥虫体中嵌合mRNA的产生是通过涉及medRNA和受体RNA的转拼过程发生的。该建议的部分依据来自HeLa细胞提取物(已知具有去分支活性)催化medRNA(minRNA)内含子部分释放的能力,这意味着在剪接过程中存在Y分支的中间体。在这里,我们提供了直接化学分析,证实miniRNA附着于更高的mol。 wt RNA分子具有2'-5'磷酸二酯键(即分支结构)。我们还证明锥虫具有大量的脱支活性,其性质与HeLa细胞相似。这些结果为锥虫体反式剪接提供了进一步的证据,并突显了它与其他真核生物中顺式剪接的相似性。

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