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Molecular cloning and characterization of SL3: A stem cell-specific SL RNA from the planarian Schmidtea mediterranea

机译:SL3的分子克隆和表征:来自涡虫Schmidtea mediterranea的干细胞特异性SL RNA

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摘要

Spliced leader (SL) trans-splicing is a biological phenomenon, common among many metazoan taxa, consisting in the transfer of a short leader sequence from a small SL RNA to the 5′ end of a subset of pre-mRNAs. While knowledge of the biochemical mechanisms driving this process has accumulated over the years, the functional consequences of such post-transcriptional event at the organismal level remain unclear. In addition, the fact that functional analyses have been undertaken mainly in trypanosomes and nematodes leaves a somehow fragmented picture of the possible biological significance and evolution of SL trans-splicing in eukaryotes. Here, we analyzed the spatial expression of SL RNAs in the planarian flatworm Schmidtea mediterranea, with the goal of identifying novel developmental paradigms for the study of trans-splicing in metazoans. Besides the previously identified SL1 and SL2, S. mediterranea expresses a third SL RNA described here as SL3. While, SL1 and SL2 are collectively expressed in a broad range of planarian cell types, SL3 is highly enriched in a subset of the planarian stem cells engaged in regenerative responses. Our findings provide new opportunities to study how trans-splicing may regulate the phenotype of a cell.
机译:剪接的前导序列(SL)剪接是一种生物学现象,在许多后生类群中很常见,包括短前导序列从小SL RNA到前mRNA子集的5'末端的转移。尽管多年来已经积累了驱动这一过程的生化机制的知识,但这种转录后事件在机体水平上的功能后果仍不清楚。此外,功能分析主要在锥虫和线虫中进行,这一事实使真核生物中SL转拼的可能生物学意义和进化留下了某种程度上的碎片图。在这里,我们分析了在涡虫flat虫Schmidtea mediterranea中SL RNAs的空间表达,目的是确定用于后生动物转拼研究的新型发育范例。除先前鉴定的SL1和SL2外,地中海中链霉菌还表达第三种SL RNA,在此称为SL3。虽然SL1和SL2在各种各样的涡虫细胞类型中共同表达,但是SL3在参与再生反应的涡虫干细胞子集中高度富集。我们的发现为研究反式剪接如何调控细胞表型提供了新的机会。

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