Developmental mRNA m<sup>5</sup>C landscape and regulatory innovations of massive m<sup>5</sup>C modification of maternal mRNAs in animals.

Liu, Jianheng; Huang, Tao; Chen, Wanying; Ding, Chenhui; Zhao, Tianxuan; Zhao, Xueni; Cai, Bing; Zhang, Yusen et al. · Nat Commun · 2022

basic_science · Level V

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Abstract

m<sup>5</sup>C is one of the longest-known RNA modifications, however, its developmental dynamics, functions, and evolution in mRNAs remain largely unknown. Here, we generate quantitative mRNA m<sup>5</sup>C maps at different stages of development in 6 vertebrate and invertebrate species and find convergent and unexpected massive methylation of maternal mRNAs mediated by NSUN2 and NSUN6. Using Drosophila as a model, we reveal that embryos lacking maternal mRNA m<sup>5</sup>C undergo cell cycle delays and fail to timely initiate maternal-to-zygotic transition, implying the functional importance of maternal mRNA m<sup>5</sup>C. From invertebrates to the lineage leading to humans, two waves of m<sup>5</sup>C regulatory innovations are observed: higher animals gain cis-directed NSUN2-mediated m<sup>5</sup>C sites at the 5' end of the mRNAs, accompanied by the emergence of more structured 5'UTR regions; humans gain thousands of trans-directed NSUN6-mediated m<sup>5</sup>C sites enriched in genes regulating the mitotic cell cycle. Collectively, our studies highlight the existence and regulatory innovations of a mechanism of early embryonic development and provide key resources for elucidating the role of mRNA m<sup>5</sup>C in biology and disease.

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