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Title
Peptide fusion improves prime editing efficiency
Authors
Keywords
-
Journal
Nature Communications
Volume 13, Issue 1, Pages -
Publisher
Springer Science and Business Media LLC
Online
2022-06-18
DOI
10.1038/s41467-022-31270-y
References
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Related references
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- (2021) Hyewon Jang et al. Nature Biomedical Engineering
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- Mapping the Human Kinome in Response to DNA Damage
- (2019) Michel Owusu et al. Cell Reports
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- (2019) Adrian Pickar-Oliver et al. NATURE REVIEWS MOLECULAR CELL BIOLOGY
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- SpCas9 activity prediction by DeepSpCas9, a deep learning–based model with high generalization performance
- (2019) Hui Kwon Kim et al. Science Advances
- Genomic and Molecular Landscape of DNA Damage Repair Deficiency across The Cancer Genome Atlas
- (2018) Theo A. Knijnenburg et al. Cell Reports
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- (2018) Max W. Shen et al. NATURE
- Programmable editing of a target base in genomic DNA without double-stranded DNA cleavage
- (2016) Alexis C. Komor et al. NATURE
- Discovery of directional and nondirectional pioneer transcription factors by modeling DNase profile magnitude and shape
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- Six Classes of Nuclear Localization Signals Specific to Different Binding Grooves of Importin α
- (2008) Shunichi Kosugi et al. JOURNAL OF BIOLOGICAL CHEMISTRY
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