Morena Francesco, Argentati Chiara, Bazzucchi Martina, Emiliani Carla, Martino Sabata
Department of Chemistry, Biology and Biotechnologies, University of Perugia, 06126 Perugia, Italy.
CEMIN, Center of Excellence of Nanostructured Innovative Materials, University of Perugia, 06126 Perugia, Italy.
Genes (Basel). 2018 Jun 28;9(7):329. doi: 10.3390/genes9070329.
Sequence databases and transcriptome-wide mapping have revealed different reversible and dynamic chemical modifications of the nitrogen bases of RNA molecules. Modifications occur in coding RNAs and noncoding-RNAs post-transcriptionally and they can influence the RNA structure, metabolism, and function. The result is the expansion of the variety of the transcriptome. In fact, depending on the type of modification, RNA molecules enter into a specific program exerting the role of the player or/and the target in biological and pathological processes. Many research groups are exploring the role of RNA modifications (alias epitranscriptome) in cell proliferation, survival, and in more specialized activities. More recently, the role of RNA modifications has been also explored in stem cell biology. Our understanding in this context is still in its infancy. Available evidence addresses the role of RNA modifications in self-renewal, commitment, and differentiation processes of stem cells. In this review, we will focus on five epitranscriptomic marks: N6-methyladenosine, N1-methyladenosine, 5-methylcytosine, Pseudouridine (Ψ) and Adenosine-to-Inosine editing. We will provide insights into the function and the distribution of these chemical modifications in coding RNAs and noncoding-RNAs. Mainly, we will emphasize the role of epitranscriptomic mechanisms in the biology of naïve, primed, embryonic, adult, and cancer stem cells.
序列数据库和全转录组图谱分析揭示了RNA分子中氮碱基存在不同的可逆性和动态化学修饰。这些修饰在转录后发生于编码RNA和非编码RNA中,并且能够影响RNA的结构、代谢及功能。其结果是转录组种类得以扩展。事实上,根据修饰类型的不同,RNA分子会进入特定程序,在生物和病理过程中发挥参与者或/及靶点的作用。许多研究团队正在探索RNA修饰(又名表观转录组)在细胞增殖、存活以及更特殊活动中的作用。最近,RNA修饰在干细胞生物学中的作用也得到了探索。我们在这方面的理解仍处于起步阶段。现有证据涉及RNA修饰在干细胞自我更新、定向分化和分化过程中的作用。在本综述中,我们将聚焦于五种表观转录组标记:N6-甲基腺苷、N1-甲基腺苷、5-甲基胞嘧啶、假尿苷(Ψ)和腺苷到肌苷的编辑。我们将深入探讨这些化学修饰在编码RNA和非编码RNA中的功能及分布。主要地,我们将强调表观转录组机制在幼稚型、预激发型、胚胎型、成体及癌症干细胞生物学中的作用。