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天然正义/反义转录本对的相互依赖转录()

Interdependent Transcription of a Natural Sense/Antisense Transcripts Pair ().

作者信息

Zinad Hany S, Sae-Lee Chanachai, Ariza-Mateos Maria Ascensión, Adamson Grace, Khazeem Mushtaq Mufleh, Knox Amber, Chung Git, Mann Jelena, Werner Andreas

机构信息

Biosciences Institute, Faculty of Medical Sciences, Newcastle University, Newcastle upon Tyne NE1 4HH, UK.

Iraqi Natural History Museum and Research Centre, University of Baghdad, Baghdad 10071, Iraq.

出版信息

Noncoding RNA. 2022 Feb 11;8(1):19. doi: 10.3390/ncrna8010019.

Abstract

Natural antisense transcripts (NATs) constitute a significant group of regulatory, long noncoding RNAs. They are prominently expressed in testis but are also detectable in other organs. NATs are transcribed at low levels and co-expressed with related protein coding sense transcripts. Nowadays NATs are generally considered as regulatory, long noncoding RNAs without closer focus on the inevitable interference between sense and antisense expression. This work describes a cellular system where sense and antisense transcription of a specific locus () is induced using epigenetic modifiers and CRISPR-Cas9. The renal cell lines HEK293 and HKC-8 do not express under normal culture conditions. Five-day exposure to dexamethasone significantly stimulates sense transcript () levels and antisense () minimally; the effect is only seen in HEK293 cells. Enhanced expression is paralleled by reduced sense promoter methylation and an increase in activating histone marks. Expression is further modulated by cassettes that stimulate the expression of sense or antisense transcript but disrupt protein coding potential. Constitutive expression of a 5'-truncated transcript increases sense expression independent of dexamethasone induction but also stimulates antisense expression. Concordant expression is confirmed with the antisense knock-in that also enhances sense expression. The antisense effect acts on transcription in cis since transient transfection with sense or antisense constructs fails to stimulate the expression of the opposite transcript. These results suggest that bi-directional transcription of the locus has a stimulatory influence on the expression of the opposite transcript involving epigenetic changes of the promoters. In perspective of extensive, previous research into bi-directionally transcribed loci, the findings underpin a hypothesis where NATs display different biological roles in soma and germ cells. Accordingly, we propose that in somatic cells, NATs act like lncRNAs-with the benefit of close proximity to a potential target gene. In germ cells, however, recent evidence suggests different biological roles for NATs that require RNA complementarity and double-stranded RNA formation.

摘要

天然反义转录本(NATs)构成了一类重要的调控性长链非编码RNA。它们在睾丸中显著表达,但在其他器官中也可检测到。NATs转录水平较低,并与相关的蛋白质编码正义转录本共表达。如今,NATs通常被视为调控性长链非编码RNA,而没有更深入地关注正义和反义表达之间不可避免的干扰。这项工作描述了一种细胞系统,其中使用表观遗传修饰剂和CRISPR-Cas9诱导特定基因座()的正义和反义转录。肾细胞系HEK293和HKC-8在正常培养条件下不表达。用 dexamethasone处理五天可显著刺激正义转录本()水平,而反义转录本()的刺激作用最小;这种效应仅在HEK293细胞中可见。表达增强伴随着正义启动子甲基化的减少和激活组蛋白标记的增加。通过刺激正义或反义转录本表达但破坏蛋白质编码潜力的盒式结构进一步调节表达。5'-截短的转录本的组成型表达增加了正义表达,而不依赖于dexamethasone诱导,但也刺激了反义表达。反义敲入也证实了一致的表达,同时也增强了正义表达。反义效应顺式作用于转录,因为用正义或反义构建体进行瞬时转染未能刺激相反转录本的表达。这些结果表明,基因座的双向转录对相反转录本的表达具有刺激作用,涉及启动子的表观遗传变化。鉴于之前对双向转录基因座的广泛研究,这些发现支持了一个假设,即NATs在体细胞和生殖细胞中发挥不同的生物学作用。因此,我们提出,在体细胞中,NATs的作用类似于lncRNAs,其优势在于与潜在靶基因紧密相邻。然而,在生殖细胞中,最近的证据表明NATs具有不同的生物学作用,需要RNA互补性和双链RNA形成。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6936/8877773/71e97723aa3b/ncrna-08-00019-g001.jpg

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