Article
Advanced eTAM-seq enables high-fidelity, low-input <i>N</i> <sup>6</sup> -methyladenosine profiling in human cells and embryonic mouse tissues
2025-05-15
Abstract excerpt
Functional dissection of N6-methyladenosine (m 6 A), the most abundant internal messenger RNA modification in mammals, demands quantitative, scalable detection technology. We previously reported eTAM-seq, which supports transcriptome-wide quantification of m 6 A by enzyme-assisted adenosine deamination. While effective, TadA8.20—the enzyme used in our first-generation technology—is sensitive not only to m 6 A b...
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Identifiers and source
- Literature Corpus work
- 6c6cfdcb-03da-5480-915d-03335dc7650d
- DOI
- 10.1101/2025.05.11.653357
