Department of Dentistry, The First Affiliated Hospital, Sun Yat-Sen University, Guangzhou, 510080, China.
Stomatological Hospital, School of Stomatology, Southern Medical University, Guangzhou, 510280, Guangdong, China.
Cell Death Differ. 2024 Jan;31(1):9-27. doi: 10.1038/s41418-023-01238-6. Epub 2023 Nov 20.
RNA modifications, known as the "epitranscriptome", represent a key layer of regulation that influences a wide array of biological processes in mesenchymal stem cells (MSCs). These modifications, catalyzed by specific enzymes, often termed "writers", "readers", and "erasers", can dynamically alter the MSCs' transcriptomic landscape, thereby modulating cell differentiation, proliferation, and responses to environmental cues. These enzymes include members of the classes METTL, IGF2BP, WTAP, YTHD, FTO, NAT, and others. Many of these RNA-modifying agents are active during MSC lineage differentiation. This review provides a comprehensive overview of the current understanding of different RNA modifications in MSCs, their roles in regulating stem cell behavior, and their implications in MSC-based therapies. It delves into how RNA modifications impact MSC biology, the functional significance of individual modifications, and the complex interplay among these modifications. We further discuss how these intricate regulatory mechanisms contribute to the functional diversity of MSCs, and how they might be harnessed for therapeutic applications. The review also highlights current challenges and potential future directions in the study of RNA modifications in MSCs, emphasizing the need for innovative tools to precisely map these modifications and decipher their context-specific effects. Collectively, this work paves the way for a deeper understanding of the role of the epitranscriptome in MSC biology, potentially advancing therapeutic strategies in regenerative medicine and MSC-based therapies.
RNA 修饰,被称为“转录后组”,代表了影响间充质干细胞(MSCs)中广泛生物学过程的关键调控层。这些修饰由特定的酶催化,这些酶通常被称为“写入器”、“读取器”和“擦除器”,可以动态改变 MSCs 的转录组景观,从而调节细胞分化、增殖和对环境线索的反应。这些酶包括 METTL、IGF2BP、WTAP、YTHD、FTO、NAT 等类别的成员。许多这些 RNA 修饰剂在 MSC 谱系分化过程中是活跃的。这篇综述提供了对 MSCs 中不同 RNA 修饰的当前理解的全面概述,包括它们在调节干细胞行为中的作用及其在基于 MSC 的治疗中的意义。它深入探讨了 RNA 修饰如何影响 MSC 生物学、单个修饰的功能意义以及这些修饰之间的复杂相互作用。我们进一步讨论了这些复杂的调节机制如何导致 MSCs 的功能多样性,以及如何利用它们进行治疗应用。该综述还强调了在 MSCs 中研究 RNA 修饰的当前挑战和潜在未来方向,强调需要创新工具来精确绘制这些修饰并破译其特定于上下文的效应。总之,这项工作为深入了解转录后组在 MSC 生物学中的作用铺平了道路,可能会推进再生医学和基于 MSC 的治疗策略中的治疗策略。