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Roles of RNA Modifications in Diverse Cellular Functions

Journal

Publisher

FRONTIERS MEDIA SA
DOI: 10.3389/fcell.2022.828683

Keywords

m(6)A; m(5)C; m(1)A; epitranscriptomics; cellular functions; therapeutics

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Chemical modifications of RNA molecules, mediated by writer, reader, and eraser proteins, regulate RNA metabolism and fate, impacting various cellular processes and disease development.
Chemical modifications of RNA molecules regulate both RNA metabolism and fate. The deposition and function of these modifications are mediated by the actions of writer, reader, and eraser proteins. At the cellular level, RNA modifications regulate several cellular processes including cell death, proliferation, senescence, differentiation, migration, metabolism, autophagy, the DNA damage response, and liquid-liquid phase separation. Emerging evidence demonstrates that RNA modifications play active roles in the physiology and etiology of multiple diseases due to their pervasive roles in cellular functions. Here, we will summarize recent advances in the regulatory and functional role of RNA modifications in these cellular functions, emphasizing the context-specific roles of RNA modifications in mammalian systems. As m(6)A is the best studied RNA modification in biological processes, this review will summarize the emerging advances on the diverse roles of m(6)A in cellular functions. In addition, we will also provide an overview for the cellular functions of other RNA modifications, including m(5)C and m(1)A. Furthermore, we will also discuss the roles of RNA modifications within the context of disease etiologies and highlight recent advances in the development of therapeutics that target RNA modifications. Elucidating these context-specific functions will increase our understanding of how these modifications become dysregulated during disease pathogenesis and may provide new opportunities for improving disease prevention and therapy by targeting these pathways.

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