Department of Biochemistry, Jacobs School of Medicine and Biomedical Sciences, State University of New York at Buffalo, 955 Main St., Buffalo, NY, 14203, USA.
Stem Cell Rev Rep. 2023 Jan;19(1):76-91. doi: 10.1007/s12015-022-10444-7. Epub 2022 Sep 12.
The methyltransferase-like (METTL) family is a diverse group of methyltransferases that can methylate nucleotides, proteins, and small molecules. Despite this diverse array of substrates, they all share a characteristic seven-beta-strand catalytic domain, and recent evidence suggests many also share an important role in stem cell biology. The most well characterized family members METTL3 and METTL14 dimerize to form an N-methyladenosine (mA) RNA methyltransferase with established roles in cancer progression. However, new mouse models indicate that METTL3/METTL14 are also important for embryonic stem cell (ESC) development and postnatal hematopoietic and neural stem cell self-renewal and differentiation. METTL1, METTL5, METTL6, METTL8, and METTL17 also have recently identified roles in ESC pluripotency and differentiation, while METTL11A/11B, METTL4, METTL7A, and METTL22 have been shown to play roles in neural, mesenchymal, bone, and hematopoietic stem cell development, respectively. Additionally, a variety of other METTL family members are translational regulators, a role that could place them as important players in the transition from stem cell quiescence to differentiation. Here we will summarize what is known about the role of METTL proteins in stem cell differentiation and highlight the connection between their growing importance in development and their established roles in oncogenesis.
甲基转移酶样(METTL)家族是一个多样化的甲基转移酶家族,能够甲基化核苷酸、蛋白质和小分子。尽管底物种类繁多,但它们都具有特征性的七-β链催化结构域,最近的证据表明,它们在干细胞生物学中也具有重要作用。最具特征性的家族成员 METTL3 和 METTL14 二聚化形成 N6-甲基腺苷(m6A)RNA 甲基转移酶,其在癌症进展中具有明确的作用。然而,新的小鼠模型表明,METTL3/METTL14 对于胚胎干细胞(ESC)的发育以及造血和神经干细胞的自我更新和分化也很重要。METTL1、METTL5、METTL6、METTL8 和 METTL17 最近也被确定在 ESC 多能性和分化中具有作用,而 METTL11A/11B、METTL4、METTL7A 和 METTL22 则被证明在神经、间充质、骨和造血干细胞发育中发挥作用。此外,其他各种 METTL 家族成员也是翻译调节剂,它们在干细胞静止到分化的转变中可能具有重要作用。在这里,我们将总结 METTL 蛋白在干细胞分化中的作用,并强调它们在发育中的重要性与其在肿瘤发生中的既定作用之间的联系。