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TE 整合诱导癌症特异性可变剪接事件。

Integration of TE Induces Cancer Specific Alternative Splicing Events.

机构信息

Department of Integrated Biological Sciences, Pusan National University, Busan 46241, Korea.

Institute of Systems Biology, Pusan National University, Busan 46241, Korea.

出版信息

Int J Mol Sci. 2022 Sep 18;23(18):10918. doi: 10.3390/ijms231810918.

Abstract

Alternative splicing of messenger RNA (mRNA) precursors contributes to genetic diversity by generating structurally and functionally distinct transcripts. In a disease state, alternative splicing promotes incidence and development of several cancer types through regulation of cancer-related biological processes. Transposable elements (TEs), having the genetic ability to jump to other regions of the genome, can bring about alternative splicing events in cancer. TEs can integrate into the genome, mostly in the intronic regions, and induce cancer-specific alternative splicing by adjusting various mechanisms, such as exonization, providing splicing donor/acceptor sites, alternative regulatory sequences or stop codons, and driving exon disruption or epigenetic regulation. Moreover, TEs can produce microRNAs (miRNAs) that control the proportion of transcripts by repressing translation or stimulating the degradation of transcripts at the post-transcriptional level. Notably, TE insertion creates a cancer-friendly environment by controlling the overall process of gene expression before and after transcription in cancer cells. This review emphasizes the correlative interaction between alternative splicing by TE integration and cancer-associated biological processes, suggesting a macroscopic mechanism controlling alternative splicing by TE insertion in cancer.

摘要

信使 RNA(mRNA)前体的选择性剪接通过产生结构和功能不同的转录本,为遗传多样性做出贡献。在疾病状态下,通过调节与癌症相关的生物过程,选择性剪接促进了几种癌症类型的发生和发展。转座元件(TEs)具有跳跃到基因组其他区域的遗传能力,可在癌症中引发选择性剪接事件。TEs 可以整合到基因组中,主要在内含子区域,并通过调节各种机制(如外显子化、提供剪接供体/受体位点、替代调节序列或终止密码子、驱动外显子破坏或表观遗传调节)诱导癌症特异性的选择性剪接。此外,TEs 可以产生 microRNAs(miRNAs),通过在转录后水平抑制翻译或刺激转录本的降解来控制转录本的比例。值得注意的是,TE 插入通过控制癌细胞中转录前后基因表达的整体过程,创造了一个有利于癌症的环境。本综述强调了 TE 整合的选择性剪接与癌症相关生物过程之间的相关性,提示了一种控制癌症中 TE 插入的选择性剪接的宏观机制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e1b4/9502224/c18d4cffd1ce/ijms-23-10918-g001.jpg

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