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Phuc Leo H. Vo
Phuc Leo H. Vo
Verified email at cumc.columbia.edu
Title
Cited by
Cited by
Year
Transposon-encoded CRISPR–Cas systems direct RNA-guided DNA integration
SE Klompe, PLH Vo, TS Halpin-Healy, SH Sternberg
Nature 571 (7764), 219-225, 2019
5102019
CRISPR RNA-guided integrases for high-efficiency, multiplexed bacterial genome engineering
PLH Vo, C Ronda, SE Klompe, EE Chen, C Acree, HH Wang, ...
Nature biotechnology 39 (4), 480-489, 2021
2232021
Unbiased profiling of CRISPR RNA-guided transposition products by long-read sequencing
PLH Vo, C Acree, ML Smith, SH Sternberg
Mobile DNA 12 (1), 13, 2021
432021
Targeted DNA integration in human cells without double-strand breaks using CRISPR-associated transposases
GD Lampe, RT King, TS Halpin-Healy, SE Klompe, MI Hogan, PLH Vo, ...
Nature Biotechnology 42 (1), 87-98, 2024
412024
Selective TnsC recruitment enhances the fidelity of RNA-guided transposition
FT Hoffmann, M Kim, LY Beh, J Wang, PLH Vo, DR Gelsinger, JT George, ...
Nature 609 (7926), 384-393, 2022
382022
Bacterial genome engineering using CRISPR RNA-guided transposases
DR Gelsinger, PLH Vo, SE Klompe, C Ronda, H Wang, SH Sternberg
bioRxiv, 2023
22023
Targeted DNA integration in human cells without double-strand breaks using CRISPR RNA-guided transposases
GD Lampe, RT King, TS Halpin-Healy, SE Klompe, MI Hogan, PLH Vo, ...
bioRxiv, 2023
12023
Bacterial genome engineering using CRISPR-associated transposases
DR Gelsinger, PLH Vo, SE Klompe, C Ronda, HH Wang, SH Sternberg
Nature Protocols, 1-39, 2024
2024
Rna-guided dna integration and modification
SH Sternberg, PLH Vo
US Patent App. 17/634,759, 2022
2022
Bacterial Genome Engineering with CRISPR RNA-Guided Transposons
PLH Vo
Columbia University, 2022
2022
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Articles 1–10