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Trans-splicing in trypanosomes: machinery and its impact on the parasite transcriptome.

机译:锥虫中的反式剪接:机制及其对寄生虫转录组的影响。

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摘要

In trypanosomes, all RNAs are processed by the concerted action of trans-splicing and polyadenylation. In trans-splicing, a common spliced leader (SL) is donated to all mRNAs from a small RNA molecule, the SL RNA. This article summarizes recent findings in the field focusing on SL RNA transcription, cap modifications and pseudouridylation. The role(s) of these modifications for splicing and gene expression are discussed. The recruitment of SL RNA to the spliceosome depends on splicing factors and recent progress in identifying such factors is described. A recent major advance in understanding the role of trans-splicing in the trypanosome transcriptome was obtained by whole-genome mapping of the SL and polyadenylation sites, revealing surprising heterogeneity and suggesting that gene regulation, especially during cycling between the two hosts of the parasite, involves alternative trans-splicing. Finally, the SL silencing mechanism, which is harnessed by the parasite to control gene expression under stress, is discussed.
机译:在锥虫中,所有RNA均通过反式剪接和聚腺苷酸化的协同作用进行加工。在转拼中,将共同的剪接前导序列(SL)捐赠给小RNA分子SL RNA的所有mRNA。本文总结了该领域的最新发现,重点是SL RNA转录,帽修饰和伪尿苷化。讨论了这些修饰对剪接和基因表达的作用。 SL RNA向剪接体的募集取决于剪接因子,并且描述了鉴定此类因子的最新进展。通过SL和聚腺苷酸化位点的全基因组作图,获得了了解转拼在锥虫转录组中作用的最新进展,揭示了令人惊讶的异质性,并暗示了基因调控,尤其是在两个寄生虫宿主之间的循环过程中,涉及替代转拼。最后,讨论了SL沉默机制,该机制被寄生虫利用来控制胁迫下的基因表达。

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