eSkip-Finder: a machine learning-based web application and database to identify the optimal sequences of antisense oligonucleotides for exon skipping

Abstract Exon skipping using antisense oligonucleotides (ASOs) has recently proven to be a powerful tool for mRNA splicing modulation. Several exon-skipping ASOs have been approved to treat genetic diseases worldwide. However, a significant challenge is the difficulty in selecting an optimal sequenc...

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Veröffentlicht in:Nucleic acids research 2021-07, Vol.49 (W1), p.W193-W198
Hauptverfasser: Chiba, Shuntaro, Lim, Kenji Rowel Q, Sheri, Narin, Anwar, Saeed, Erkut, Esra, Shah, Md Nur Ahad, Aslesh, Tejal, Woo, Stanley, Sheikh, Omar, Maruyama, Rika, Takano, Hiroaki, Kunitake, Katsuhiko, Duddy, William, Okuno, Yasushi, Aoki, Yoshitsugu, Yokota, Toshifumi
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Sprache:eng
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Zusammenfassung:Abstract Exon skipping using antisense oligonucleotides (ASOs) has recently proven to be a powerful tool for mRNA splicing modulation. Several exon-skipping ASOs have been approved to treat genetic diseases worldwide. However, a significant challenge is the difficulty in selecting an optimal sequence for exon skipping. The efficacy of ASOs is often unpredictable, because of the numerous factors involved in exon skipping. To address this gap, we have developed a computational method using machine-learning algorithms that factors in many parameters as well as experimental data to design highly effective ASOs for exon skipping. eSkip-Finder (https://eskip-finder.org) is the first web-based resource for helping researchers identify effective exon skipping ASOs. eSkip-Finder features two sections: (i) a predictor of the exon skipping efficacy of novel ASOs and (ii) a database of exon skipping ASOs. The predictor facilitates rapid analysis of a given set of exon/intron sequences and ASO lengths to identify effective ASOs for exon skipping based on a machine learning model trained by experimental data. We confirmed that predictions correlated well with in vitro skipping efficacy of sequences that were not included in the training data. The database enables users to search for ASOs using queries such as gene name, species, and exon number. Graphical Abstract Graphical Abstract eSkip-Finder uses information on exon skipping antisense oligonucleotides from the literature to produce a database and a skipping efficacy predictive tool to aid researchers in designing effective exon skipping therapies.
ISSN:0305-1048
1362-4962
DOI:10.1093/nar/gkab442