4.8 Article

METTL1 Promotes let-7 MicroRNA Processing via m7G Methylation

期刊

MOLECULAR CELL
卷 74, 期 6, 页码 1278-+

出版社

CELL PRESS
DOI: 10.1016/j.molcel.2019.03.040

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资金

  1. Cancer Research UK [RG72100, C6946/A24843, RG86786]
  2. ERC [268569]
  3. Wellcome Trust [WT203144]
  4. Kay Kendall Leukaemia Fund project grant [RG88664]
  5. ERC Advanced grant [337778]
  6. Horizon 2020 grant [732678]
  7. core funding from Cancer Research UK
  8. European Research Council (ERC) [268569] Funding Source: European Research Council (ERC)

向作者/读者索取更多资源

7-methylguanosine (m7G) is present at mRNA caps and at defined internal positions within tRNAs and rRNAs. However, its detection within low-abundance mRNAs and microRNAs (miRNAs) has been hampered by a lack of sensitive detection strategies. Here, we adapt a chemical reactivity assay to detect internal m7G in miRNAs. Using this technique (Borohydride Reduction sequencing [BoRed-seq]) alongside RNA immunoprecipitation, we identify m7G within a subset of miRNAs that inhibit cell migration. We show that the METTL1 methyltransferase mediates m7G methylation within miRNAs and that this enzyme regulates cell migration via its catalytic activity. Using refined mass spectrometry methods, we map m7G to a single guanosine within the let-7e-5p miRNA. We show that METTL1-mediated methylation augments let-7 miRNA processing by disrupting an inhibitory secondary structure within the primary miRNA transcript (pri-miRNA). These results identify METTL1-dependent N7-methylation of guanosine as a new RNA modification pathway that regulates miRNA structure, biogenesis, and cell migration.

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