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February 19, 2026Genome Research1 citations

EnDeep4mC predicts DNA N 4 -methylcytosine sites using a dual-adaptive feature encoding framework in deep ensembles

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ZHZhimin HuQZQuan ZouMNMengting Niu

Key Points

  • The research aims to enhance the prediction of DNA N4-methylcytosine sites through a novel dual-adaptive framework.
  • Proposed a dual-adaptive feature encoding framework called EnDeep4mC.
  • Integrated species-specific modeling with ensemble deep learning architectures.
  • Evaluated performance across six different species for cross-validation.
  • EnDeep4mC outperforms existing state-of-the-art predictors.
  • Demonstrated commendable prediction performance across species.
  • Validated robust transferability from animal to microbe groups.

Abstract

DNA N 4 -methylcytosine (4mC), a key epigenetic modification regulating DNA repair and replication, requires efficient computational detection methods due to experimental limitations. Although machine learning predictors have been proposed, their performance could be enhanced through systematic optimization of feature encoding schemes. Here, we propose EnDeep4mC, a dual-adaptive framework integrating species-specific modeling with ensemble deep learning architectures to systematically optimize feature encoding schemes. Evaluated across six species, EnDeep4mC demonstrates commendable prediction performance and significantly outperforms current state-of-the-art predictors. Cross-species validation confirms its robust transferability from animal to microbe groups. Evolutionary analysis further uncovers the functional differentiation of 4mC sequences in biological evolution: Prokaryotic 4mC relies on stable patterns, whereas eukaryotes achieve regulatory plasticity through dynamic sequence combinations, which provides experimental evidence for species-adaptive encoding strategies.

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Cite This Study

Hu et al. (2026) studied this question.

synapsesocial.com/papers/6996a869ecb39a600b3ef1b8https://doi.org/10.1101/gr.280977.125
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