Decoding m<sup>6</sup>Am by simultaneous transcription-start mapping and methylation quantification.

Liu, Jianheng Fox; Hawley, Ben R; Nicholson, Luke S; Jaffrey, Samie R · Elife · 2025

basic_science · Level V

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Abstract

<i>N</i> <sup>6</sup>,2'-<i>O</i>-dimethyladenosine (m<sup>6</sup>Am) is a modified nucleotide located at the first transcribed position in mRNA and snRNA that is essential for diverse physiological processes. m<sup>6</sup>Am mapping methods assume each gene uses a single start nucleotide. However, gene transcription usually involves multiple start sites, generating numerous 5' isoforms. Thus, gene-level annotations cannot capture the diversity of m<sup>6</sup>Am modification in the transcriptome. Here, we describe CROWN-seq, which simultaneously identifies transcription-start nucleotides and quantifies m<sup>6</sup>Am stoichiometry for each 5' isoform that initiates with adenosine. Using CROWN-seq, we map the m<sup>6</sup>Am landscape in nine human cell lines. Our findings reveal that m<sup>6</sup>Am is nearly always a high stoichiometry modification, with only a small subset of cellular mRNAs showing lower m<sup>6</sup>Am stoichiometry. We find that m<sup>6</sup>Am is associated with increased transcript expression and provide evidence that m<sup>6</sup>Am may be linked to transcription initiation associated with specific promoter sequences and initiation mechanisms. These data suggest a potential new function for m<sup>6</sup>Am in influencing transcription.

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