Accurate detection of m<sup>6</sup>A RNA modifications in native RNA sequences.

Liu, Huanle; Begik, Oguzhan; Lucas, Morghan C; Ramirez, Jose Miguel; Mason, Christopher E; Wiener, David; Schwartz, Schraga; Mattick, John S et al. · Nat Commun · 2019

basic_science · Level V

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Abstract

The epitranscriptomics field has undergone an enormous expansion in the last few years; however, a major limitation is the lack of generic methods to map RNA modifications transcriptome-wide. Here, we show that using direct RNA sequencing, N<sup>6</sup>-methyladenosine (m<sup>6</sup>A) RNA modifications can be detected with high accuracy, in the form of systematic errors and decreased base-calling qualities. Specifically, we find that our algorithm, trained with m<sup>6</sup>A-modified and unmodified synthetic sequences, can predict m<sup>6</sup>A RNA modifications with ~90% accuracy. We then extend our findings to yeast data sets, finding that our method can identify m<sup>6</sup>A RNA modifications in vivo with an accuracy of 87%. Moreover, we further validate our method by showing that these 'errors' are typically not observed in yeast ime4-knockout strains, which lack m<sup>6</sup>A modifications. Our results open avenues to investigate the biological roles of RNA modifications in their native RNA context.

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