RNA Modifications and Epigenetics in Modulation of Lung Cancer and Pulmonary Diseases

生物 表观遗传学 癌变 核糖核酸 染色质 假尿苷 RNA剪接 表观遗传学 组蛋白 染色质重塑 DNA甲基化 肺癌 癌症 计算生物学 细胞生物学 遗传学 基因表达 基因 医学 病理 尿苷
作者
Pai‐Chi Teng,Yanwen Liang,Aliaksandr A. Yarmishyn,Yu Jer Hsiao,Ting Lin,Tzu Wei Lin,Yuan Teng,Yi Yang,Mong‐Lien Wang,Chian‐Shiu Chien,Yung‐Hung Luo,Yuh Min Chen,Po‐Kuei Hsu,Shih Hwa Chiou,Yueh Chien
出处
期刊:International Journal of Molecular Sciences [MDPI AG]
卷期号:22 (19): 10592-10592 被引量:65
标识
DOI:10.3390/ijms221910592
摘要

Lung cancer is the leading cause of cancer-related mortality worldwide, and its tumorigenesis involves the accumulation of genetic and epigenetic events in the respiratory epithelium. Epigenetic modifications, such as DNA methylation, RNA modification, and histone modifications, have been widely reported to play an important role in lung cancer development and in other pulmonary diseases. Whereas the functionality of DNA and chromatin modifications referred to as epigenetics is widely characterized, various modifications of RNA nucleotides have recently come into prominence as functionally important. N6-methyladosine (m6A) is the most prevalent internal modification in mRNAs, and its machinery of writers, erasers, and readers is well-characterized. However, several other nucleotide modifications of mRNAs and various noncoding RNAs have also been shown to play an important role in the regulation of biological processes and pathology. Such epitranscriptomic modifications play an important role in regulating various aspects of RNA metabolism, including transcription, translation, splicing, and stability. The dysregulation of epitranscriptomic machinery has been implicated in the pathological processes associated with carcinogenesis including uncontrolled cell proliferation, migration, invasion, and epithelial-mesenchymal transition. In recent years, with the advancement of RNA sequencing technology, high-resolution maps of different modifications in various tissues, organs, or disease models are being constantly reported at a dramatic speed. This facilitates further understanding of the relationship between disease development and epitranscriptomics, shedding light on new therapeutic possibilities. In this review, we summarize the basic information on RNA modifications, including m6A, m1A, m5C, m7G, pseudouridine, and A-to-I editing. We then demonstrate their relation to different kinds of lung diseases, especially lung cancer. By comparing the different roles RNA modifications play in the development processes of different diseases, this review may provide some new insights and offer a better understanding of RNA epigenetics and its involvement in pulmonary diseases.
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