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一种非编码反义转录本的剪接控制LEF1基因的表达。

Splicing of a non-coding antisense transcript controls LEF1 gene expression.

作者信息

Beltran Manuel, Aparicio-Prat Estel, Mazzolini Rocco, Millanes-Romero Alba, Massó Pere, Jenner Richard G, Díaz Víctor M, Peiró Sandra, de Herreros Antonio García

机构信息

Programa de Recerca en Càncer, Institut Hospital del Mar d'Investigacions Mèdiques, 08003 Barcelona, Spain UCL Cancer Institute, University College London, London, WC1E6BT, UK.

Programa de Recerca en Càncer, Institut Hospital del Mar d'Investigacions Mèdiques, 08003 Barcelona, Spain.

出版信息

Nucleic Acids Res. 2015 Jul 13;43(12):5785-97. doi: 10.1093/nar/gkv502. Epub 2015 May 18.

Abstract

In this report we have analyzed the role of antisense transcription in the control of LEF1 transcription factor expression. A natural antisense transcript (NAT) is transcribed from a promoter present in the first intron of LEF1 gene and undergoes splicing in mesenchymal cells. Although this locus is silent in epithelial cells, and neither NAT transcript nor LEF1 mRNA are expressed, in cell lines with an intermediate epithelial-mesenchymal phenotype presenting low LEF1 expression, the NAT is synthesized and remains unprocessed. Contrarily to the spliced NAT, this unspliced NAT down-regulates the main LEF1 promoter activity and attenuates LEF1 mRNA transcription. Unspliced LEF1 NAT interacts with LEF1 promoter and facilitates PRC2 binding to the LEF1 promoter and trimethylation of lysine 27 in histone 3. Expression of the spliced form of LEF1 NAT in trans prevents the action of unspliced NAT by competing for interaction with the promoter. Thus, these results indicate that LEF1 gene expression is attenuated by an antisense non-coding RNA and that this NAT function is regulated by the balance between its spliced and unspliced forms.

摘要

在本报告中,我们分析了反义转录在LEF1转录因子表达调控中的作用。一种天然反义转录本(NAT)从LEF1基因第一内含子中的启动子转录而来,并在间充质细胞中进行剪接。尽管该基因座在上皮细胞中沉默,且NAT转录本和LEF1 mRNA均未表达,但在具有低LEF1表达的中间上皮-间充质表型的细胞系中,NAT被合成且未被加工。与剪接后的NAT相反,这种未剪接的NAT下调LEF1主要启动子活性并减弱LEF1 mRNA转录。未剪接的LEF1 NAT与LEF1启动子相互作用,并促进PRC2与LEF1启动子结合以及组蛋白3赖氨酸27的三甲基化。反式表达剪接形式的LEF1 NAT通过竞争与启动子的相互作用来阻止未剪接NAT的作用。因此,这些结果表明LEF1基因表达被一种反义非编码RNA减弱,并且这种NAT功能受其剪接和未剪接形式之间平衡的调节。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c677/4499130/67c6e0839bab/gkv502fig1.jpg

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