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Cell Chemical Biology
|
March 3, 2016
Chemical Biology Approaches to Genome Editing: Understanding, Controlling, and Delivering Programmable Nucleases
Johnny H Hu, Kevin M Davis, David R Liu
Current Opinion in Chemical Biology
|
May 23, 2002
Recent advances in the in vitro evolution of nucleic acids
Joshua A Bittker, Kevin J Phillips, David R Liu
Nature Biotechnology
|
September 10, 2002
Nucleic acid evolution and minimization by nonhomologous random recombination
Joshua A Bittker, Brian V Le, David R Liu
Nature Biotechnology
|
April 29, 2014
Fusion of catalytically inactive Cas9 to FokI nuclease improves the specificity of genome modification
John P Guilinger, David B Thompson, David R Liu
Journal of the American Chemical Society
|
August 24, 2006
Binding and stability determinants of the PPARgamma nuclear receptor-coactivator interface as revealed by shotgun alanine scanning and in vivo selection
Kevin J Phillips, Daniel M Rosenbaum, David R Liu
Nature Protocols
|
January 19, 2021
Precision genome editing using cytosine and adenine base editors in mammalian cells
Tony P Huang, Gregory A Newby, David R Liu
Journal of the American Chemical Society
|
November 13, 2007
Development and initial application of a hybridization-independent, DNA-encoded reaction discovery system compatible with organic solvents
Mary M Rozenman, Matthew W Kanan, David R Liu
Journal of the American Chemical Society
|
June 16, 2009
Reactivity-dependent PCR: direct, solution-phase in vitro selection for bond formation
David J Gorin, Adam S Kamlet, David R Liu
Cell
|
April 22, 2017
CRISPR-Based Technologies for the Manipulation of Eukaryotic Genomes
Alexis C Komor, Ahmed H Badran, David R Liu
Nature Chemical Biology
|
October 12, 2021
Reconstruction of evolving gene variants and fitness from short sequencing reads
Max W Shen, Kevin T Zhao, David R Liu
Page
of 33
Search research articles
Search
Showing results (41-50 of 321) with videos related to
Sort By:
Page
of 33
Cell Chemical Biology
|
March 3, 2016
Chemical Biology Approaches to Genome Editing: Understanding, Controlling, and Delivering Programmable Nucleases
Johnny H Hu, Kevin M Davis, David R Liu
Current Opinion in Chemical Biology
|
May 23, 2002
Recent advances in the in vitro evolution of nucleic acids
Joshua A Bittker, Kevin J Phillips, David R Liu
Nature Biotechnology
|
September 10, 2002
Nucleic acid evolution and minimization by nonhomologous random recombination
Joshua A Bittker, Brian V Le, David R Liu
Nature Biotechnology
|
April 29, 2014
Fusion of catalytically inactive Cas9 to FokI nuclease improves the specificity of genome modification
John P Guilinger, David B Thompson, David R Liu
Journal of the American Chemical Society
|
August 24, 2006
Binding and stability determinants of the PPARgamma nuclear receptor-coactivator interface as revealed by shotgun alanine scanning and in vivo selection
Kevin J Phillips, Daniel M Rosenbaum, David R Liu
Nature Protocols
|
January 19, 2021
Precision genome editing using cytosine and adenine base editors in mammalian cells
Tony P Huang, Gregory A Newby, David R Liu
Journal of the American Chemical Society
|
November 13, 2007
Development and initial application of a hybridization-independent, DNA-encoded reaction discovery system compatible with organic solvents
Mary M Rozenman, Matthew W Kanan, David R Liu
Journal of the American Chemical Society
|
June 16, 2009
Reactivity-dependent PCR: direct, solution-phase in vitro selection for bond formation
David J Gorin, Adam S Kamlet, David R Liu
Cell
|
April 22, 2017
CRISPR-Based Technologies for the Manipulation of Eukaryotic Genomes
Alexis C Komor, Ahmed H Badran, David R Liu
Nature Chemical Biology
|
October 12, 2021
Reconstruction of evolving gene variants and fitness from short sequencing reads
Max W Shen, Kevin T Zhao, David R Liu
Page
of 33