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A DRACH Observed/Expected Metric Reveals the Evolutionary Landscape of Epitranscriptomic Regulation Across Bilateria
Natacha Clairet1,2, Jérémy Le Luyer3, Hélène Auger1,2
1Marine Ecosystems and Organisms Research Lab, Université De Caen Normandie, Normandie Univ, Caen, France.
Abstract:
N6-methyladenosine (m6A) RNA modification is a dynamic post-transcriptional regulatory mechanism that rapidly modulates gene expression by influencing RNA stability, export, splicing, translation, and decay. In bilaterians, m6A is predominantly deposited at the DRACH consensus motif, which comprises 18 sequence variants. Although the presence of a DRACH motif does not indicate whether a transcript is currently, or has ever been, methylated, it reflects its potential for m6A-mediated regulation. Here, we introduce a new metric, DRACH observed/expected (DRACH o/e), to quantify the relative enrichment of DRACH motifs independently of sequence composition. We applied this approach to characterize the abundance, distribution, and genomic organization of DRACH motifs in the Pacific oyster Magallana gigas, a representative lophotrochozoan species in which m6A regulation remains poorly characterized. These analyses were extended to eight additional species spanning major bilaterian lineages and exhibiting contrasting ecological traits. Comparative analysis revealed strong conservation of the m6A regulatory machinery together with conserved and lineage-specific patterns of DRACH motif distribution and functional enrichment. This work introduces a robust framework for estimating the potential for transcript m6A methylation while overcoming the inherent variability of epitranscriptomes, thereby paving the way to explore comparative analyses of its potential phylogenetic and/or ecological drivers.
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