IRF3的选择性剪接在肝癌的发生发展中起着重要作用。

IF 2.9 3区 生物学 Q3 BIOCHEMISTRY & MOLECULAR BIOLOGY Epigenetics Pub Date : 2023-12-01 Epub Date: 2023-11-05 DOI:10.1080/15592294.2023.2276371
Zhenyi Lv, Wenqi Gao, Zhiwei Du, Yi Zheng, Tianming Liu, Chenjun Hao, Dongbo Xue
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引用次数: 0

摘要

选择性剪接是一个导致信使核糖核酸翻译产生不同蛋白质的过程,对肿瘤的发展至关重要。在本研究中,我们使用生物信息学分析构建了一个与肝癌选择性剪接事件相关的预后模型,包括CSAD、AFMID、ZDHHC16和IRF3的选择性剪接。该模型是一个独立的预后因素,可以准确预测患者的预后。IRF3是一种与免疫反应相关的转录因子。其选择性剪接可以影响与预后相关的各种基因的表达,并在肿瘤微环境中发挥重要作用。我们还在mRNA水平上验证了肝癌中IRF3外显子跳跃异构体的表达。总之,我们发现IRF3的选择性剪接对肝癌的发展至关重要。这项研究为肝癌治疗的发展提供了新的见解。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

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Alternative splicing of IRF3 plays an important role in the development of hepatocarcinoma.

Alternative splicing is a process causing mRNA translation to produce different proteins, and it is crucial for the development of tumours. In this study, we constructed a prognostic model related to alternative splicing events in hepatocarcinoma using bioinformatics analysis, including the alternative splicing of CSAD, AFMID, ZDHHC16, and IRF3. The model is an independent prognostic factor and can accurately predict a patient's prognosis. IRF3 is a transcription factor related to the immune response. Its alternative splicing can affect the expression of various genes related to prognosis and plays an essential role in the tumour microenvironment. We also verified the expression of IRF3 exon skipping isoform in hepatocarcinoma at the mRNA level. In conclusion, we discovered that the alternative splicing of IRF3 is essential for the development of hepatocarcinoma. This study provides new insight into the development of treatments for hepatocarcinoma.

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来源期刊
Epigenetics
Epigenetics 生物-生化与分子生物学
CiteScore
6.80
自引率
2.70%
发文量
82
审稿时长
3-8 weeks
期刊介绍: Epigenetics publishes peer-reviewed original research and review articles that provide an unprecedented forum where epigenetic mechanisms and their role in diverse biological processes can be revealed, shared, and discussed. Epigenetics research studies heritable changes in gene expression caused by mechanisms others than the modification of the DNA sequence. Epigenetics therefore plays critical roles in a variety of biological systems, diseases, and disciplines. Topics of interest include (but are not limited to): DNA methylation Nucleosome positioning and modification Gene silencing Imprinting Nuclear reprogramming Chromatin remodeling Non-coding RNA Non-histone chromosomal elements Dosage compensation Nuclear organization Epigenetic therapy and diagnostics Nutrition and environmental epigenetics Cancer epigenetics Neuroepigenetics
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