College of Chemistry and Molecular Sciences, Institute of Advanced Studies, Key Laboratory of Biomedical Polymers of Ministry of Education, Hubei Province Key Laboratory of Allergy and Immunology, Wuhan University, Hubei, Wuhan 430072, P. R. China.
Chem Soc Rev. 2017 May 22;46(10):2844-2872. doi: 10.1039/c6cs00599c.
The epigenetic modification of nucleic acids represents one of the most significant areas of study in the field of nucleic acids because it makes gene regulation more complex and heredity more complicated, thus indicating its profound impact on aspects of heredity, growth, and diseases. The recent characterization of epigenetic modifications of DNA and RNA using chemical labelling strategies has promoted the discovery of these modifications, and the newly developed single-base or single-cell resolution mapping strategies have enabled large-scale epigenetic studies in eukaryotes. Due to these technological breakthroughs, several new epigenetic marks have been discovered that have greatly extended the scope and impact of epigenetic modifications in nucleic acids over the past few years. Because epigenetics is reversible and susceptible to environmental factors, it could potentially be a promising direction for clinical medicine research. In this review, we have comprehensively discussed how these epigenetic marks are involved in disease, including the pathogenesis, prevention, diagnosis and treatment of disease. These findings have revealed that the epigenetic modification of nucleic acids has considerable significance in various areas from methodology to clinical medicine and even in biomedical applications.
核酸的表观遗传修饰是核酸领域中最重要的研究领域之一,因为它使基因调控更加复杂,遗传更加复杂,从而表明它对遗传、生长和疾病等方面都有深远的影响。近年来,利用化学标记策略对 DNA 和 RNA 的表观遗传修饰进行了特征描述,促进了这些修饰的发现,新开发的单碱基或单细胞分辨率映射策略使真核生物的大规模表观遗传研究成为可能。由于这些技术突破,发现了几种新的表观遗传标记,这些标记大大扩展了核酸中表观遗传修饰的范围和影响。由于表观遗传学是可逆的,并且容易受到环境因素的影响,因此它可能是临床医学研究的一个很有前途的方向。在这篇综述中,我们全面讨论了这些表观遗传标记如何参与疾病,包括疾病的发病机制、预防、诊断和治疗。这些发现表明,核酸的表观遗传修饰在从方法学到临床医学甚至生物医学应用的各个领域都具有重要意义。