Jeffrey Mak : Publications
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[0]
DeepEmbCas9: Cas9 coevolution and sgRNA structural information for CRISPR−Cas9 cleavage activity prediction
Jeffrey Mak and Peter Minary
In bioRxiv. 2025.
Details about DeepEmbCas9: Cas9 coevolution and sgRNA structural information for CRISPR−Cas9 cleavage activity prediction | BibTeX data for DeepEmbCas9: Cas9 coevolution and sgRNA structural information for CRISPR−Cas9 cleavage activity prediction | DOI (10.1101/2025.10.08.681228) | Link to DeepEmbCas9: Cas9 coevolution and sgRNA structural information for CRISPR−Cas9 cleavage activity prediction
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[1]
Learning to utilize internal protein 3D nanoenvironment descriptors in predicting CRISPR–Cas9 off−target activity
Jeffrey Kelvin Mak‚ Artemi Bendandi‚ José Augusto Salim‚ Ivan Mazoni‚ Fabio Rogerio de Moraes‚ Luiz Borro‚ Florian Störtz‚ Walter Rocchia‚ Goran Neshich and Peter Minary
In NAR Genomics and Bioinformatics. Vol. 7. No. 2. Pages lqaf054. 2025.
Details about Learning to utilize internal protein 3D nanoenvironment descriptors in predicting CRISPR–Cas9 off−target activity | BibTeX data for Learning to utilize internal protein 3D nanoenvironment descriptors in predicting CRISPR–Cas9 off−target activity
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[2]
piCRISPR: physically informed deep learning models for CRISPR/Cas9 off−target cleavage prediction
Florian Störtz‚ Jeffrey K Mak and Peter Minary
In Artificial Intelligence in the Life Sciences. Vol. 3. Pages 100075. 2023.
Details about piCRISPR: physically informed deep learning models for CRISPR/Cas9 off−target cleavage prediction | BibTeX data for piCRISPR: physically informed deep learning models for CRISPR/Cas9 off−target cleavage prediction
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[3]
Comprehensive computational analysis of epigenetic descriptors affecting CRISPR−Cas9 off−target activity
Jeffrey K Mak‚ Florian Störtz and Peter Minary
In BMC genomics. Vol. 23. No. 1. Pages 805. 2022.
Details about Comprehensive computational analysis of epigenetic descriptors affecting CRISPR−Cas9 off−target activity | BibTeX data for Comprehensive computational analysis of epigenetic descriptors affecting CRISPR−Cas9 off−target activity