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Reversible N6-methyladenosine of RNA: The regulatory mechanisms on gene expression and implications in physiology and pathology

机译:RNA的可逆N6-甲基腺苷:基因表达的调节机制和生理病理学的影响

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N6-methyladenosine (m6A) is the most abundant inner RNA modification in eukaryotes. Due to the development of RNA sequencing technology, the distribution pattern of m6A in the transcriptome has been uncovered. Dynamically, the reversible N6-methylation is mediated by two types of proteins, which are classified as “writers” and “erasers”. Under the association of specific co-factors, writers show spatiotemporal N6-methyltransferase activity. Mechanically, m6A can be recognized by “reader” proteins or can directly modify RNA conformation, and it widely affects gene expression by mediating RNA stability, translation, splicing and export. m6A is involved in a series of physiology processes. Dysregulation of m6A is gradually defined as the pathogenesis of some diseases, e.g., cancer and cardiovascular disease. Therefore, a good understanding of m6A is essential for molecular biology and pathology research. In this article we systemically present an overview of the functions and mechanisms of identified m6A regulators. The discovered biological and pathological processes affected by m6A are also summarized. We hope that readers with related research interests benefit from our review.
机译:N6-甲基腺苷(M6A)是真核生物中最丰富的内部RNA改性。由于RNA测序技术的发展,已揭示了转录组中M6a的分布模式。动态地,可逆N6-甲基化由两种类型的蛋白质介导,其被归类为“作者”和“橡皮擦”。在特定协会的协会下,作者展示了时尚的N6-甲基转移酶活性。机械地,M6A可以通过“读者”蛋白质识别或可以直接修饰RNA构象,并且通过介导RNA稳定性,翻译,剪接和出口广泛影响基因表达。 M6A涉及一系列生理过程。 M6a的失调逐渐被定义为某些疾病的发病机制,例如癌症和心血管疾病。因此,对M6A的良好理解对于分子生物学和病理研究至关重要。在本文中,我们系统性地概述了所识别的M6A调节器的功能和机制。还总结了受M6A影响的发现的生物学和病理过程。我们希望读者有相关的研究兴趣受益于我们的审核。

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