METTL3-mediated chromatin contacts promote stress granule phase separation through metabolic reprogramming during senescence

Author:

Wang Chen,Tanizawa Hideki,Hill Connor,Havas Aaron,Zhang Qiang,Liao Liping,Hao XueORCID,Lei Xue,Wang Lu,Nie Hao,Qi YuanORCID,Tian BinORCID,Gardini AlessandroORCID,Kossenkov Andrew V.,Goldman AaronORCID,Berger Shelley L.ORCID,Noma Ken-ichiORCID,Adams Peter D.ORCID,Zhang RugangORCID

Abstract

AbstractMETTL3 is the catalytic subunit of the methyltransferase complex, which mediates m6A modification to regulate gene expression. In addition, METTL3 regulates transcription in an enzymatic activity-independent manner by driving changes in high-order chromatin structure. However, how these functions of the methyltransferase complex are coordinated remains unknown. Here we show that the methyltransferase complex coordinates its enzymatic activity-dependent and independent functions to regulate cellular senescence, a state of stable cell growth arrest. Specifically, METTL3-mediated chromatin loops induce Hexokinase 2 expression through the three-dimensional chromatin organization during senescence. Elevated Hexokinase 2 expression subsequently promotes liquid-liquid phase separation, manifesting as stress granule phase separation, by driving metabolic reprogramming. This correlates with an impairment of translation of cell-cycle related mRNAs harboring polymethylated m6A sites. In summary, our results report a coordination of m6A-dependent and -independent function of the methyltransferase complex in regulating senescence through phase separation driven by metabolic reprogramming.

Funder

U.S. Department of Health & Human Services | NIH | National Cancer Institute

U.S. Department of Health & Human Services | National Institutes of Health

Publisher

Springer Science and Business Media LLC

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