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An antisense promoter in mouse L1 retrotransposon open reading frame-1 initiates expression of diverse fusion transcripts and limits retrotransposition

机译:小鼠L1反转录转座子开放阅读框1中的反义启动子启动了多种融合转录本的表达并限制了反转录转座

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摘要

Between 6 and 30% of human and mouse transcripts are initiated from transposable elements. However, the promoters driving such transcriptional activity are mostly unknown. We experimentally characterized an antisense (AS) promoter in mouse L1 retrotransposons for the first time, oriented antiparallel to the coding strand of L1 open reading frame-1. We found that AS transcription is mediated by RNA polymerase II. Rapid amplification of cDNA ends cloning mapped transcription start sites adjacent to the AS promoter. We identified > 100 novel fusion transcripts, of which many were conserved across divergent mouse lineages, suggesting conservation of potential functions. To evaluate whether AS L1 transcription could regulate L1 retrotransposition, we replaced portions of native open reading frame-1 in donor elements by synonymously recoded sequences. The resulting L1 elements lacked AS promoter activity and retrotransposed more frequently than endogenous L1s. Overexpression of AS L1 transcripts also reduced L1 retrotransposition. This suppression of retrotransposition was largely independent of Dicer. Our experiments shed new light on how AS fusion transcripts are initiated from endogenous L1 elements across the mouse genome. Such AS transcription can contribute substantially both to natural transcriptional variation and to endogenous regulation of L1 retrotransposition.
机译:6%至30%的人类和小鼠转录本是由可转座因子引发的。但是,驱动这种转录活性的启动子大多是未知的。我们首次在小鼠L1逆转座子中实验性地表征了一个反义(AS)启动子,定向反平行于L1开放阅读框1的编码链。我们发现AS转录是由RNA聚合酶II介导的。 cDNA的快速扩增终止克隆与AS启动子相邻的定位转录起始位点。我们鉴定出> 100种新颖的融合转录本,其中许多在不同的小鼠谱系中均保守,表明潜在功能的保守性。为了评估AS L1转录是否可以调控L1逆转座,我们用同义重新编码的序列替换了供体元件中天然开放阅读框1的部分。产生的L1元件缺乏AS启动子活性,并且比内源L1s更频繁地逆转座。 AS L1转录本的过表达也减少了L1逆转座。逆转座的这种抑制很大程度上独立于Dicer。我们的实验揭示了如何从小鼠基因组中的内源性L1元件引发AS融合转录本。这样的AS转录可以对自然转录变异和L1逆转座的内源性调节产生重大贡献。

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