Kenneth A. Johnson
Affiliations: | Biochemistry | University of Texas at Austin, Austin, Texas, U.S.A. |
Area:
Cellular and Molecular BiologyWebsite:
https://cns.utexas.edu/directory/item/16-molecular-biosciences/149-johnson-kenneth?Itemid=349Google:
"Kenneth Johnson"Bio:
http://johnson.cm.utexas.edu/kjohnson/
https://scholar.google.com/citations?user=svnoYbAAAAAJ&hl=en
Cross-listing: Chemistry Tree
Parents
Sign in to add mentorGary G. Borisy | grad student | 1975 | UW Madison | |
(The mechanism of microtubule self-assembly) | ||||
Edwin W. Taylor | post-doc | Chicago |
Children
Sign in to add traineeErika L. F. Holzbaur | grad student | 1987 | Penn State |
Zucai Suo | grad student | 1997 | Penn State (Chemistry Tree) |
Allison A. Johnson | grad student | 2000 | UT Austin |
Scott D. Auerbach | grad student | 2004 | UT Austin |
Jeremiah W. Hanes | grad student | 2004 | UT Austin |
Louise Z. Wang | grad student | 2004 | UT Austin |
Harold R. Lee | grad student | 2005 | UT Austin |
Yu-Chih Tsai | grad student | 2005 | UT Austin |
Susan P. Gilbert | post-doc | Penn State | |
Smita S. Patel | post-doc | 1988-1991 | Penn State (Chemistry Tree) |
James William Caras | post-doc | 2000 | UT Austin (Chemistry Tree) |
BETA: Related publications
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Publications
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Dangerfield TL, Johnson KA. (2023) Design and interpretation of experiments to establish enzyme pathway and define the role of conformational changes in enzyme specificity. Methods in Enzymology. 685: 461-492 |
Dangerfield TL, Johnson KA. (2022) Kinetics of DNA strand transfer between polymerase and proofreading exonuclease active sites regulates error correction during high fidelity replication. The Journal of Biological Chemistry. 102744 |
Dangerfield TL, Kirmizialtin S, Johnson KA. (2022) Substrate specificity and proposed structure of the proofreading complex of T7 DNA polymerase. The Journal of Biological Chemistry. 101627 |
Dangerfield TL, Kirmizialtin S, Johnson KA. (2021) Conformational dynamics during misincorporation and mismatch extension defined using a DNA polymerase with a fluorescent artificial amino acid. The Journal of Biological Chemistry. 298: 101451 |
Fagan SP, Mukherjee P, Jaremko WJ, et al. (2021) Pyrophosphate release acts as a kinetic checkpoint during high-fidelity DNA replication by the Staphylococcus aureus replicative polymerase PolC. Nucleic Acids Research |
Dangerfield TL, Johnson KA. (2020) Conformational dynamics during high fidelity DNA replication and translocation defined using a DNA polymerase with a fluorescent artificial amino acid. The Journal of Biological Chemistry |
Villalba B, Johnson KA. (2020) Rate-limiting pyrophosphate release by Hepatitis C Virus polymerase NS5B improves fidelity. The Journal of Biological Chemistry |
Liu MS, Gong S, Yu HH, et al. (2020) Engineered CRISPR/Cas9 enzymes improve discrimination by slowing DNA cleavage to allow release of off-target DNA. Nature Communications. 11: 3576 |
Villalba B, Li J, Johnson KA. (2020) Resistance to excision determines efficiency of inhibition of hepatitis C virus RNA-dependent RNA polymerase by nucleotide analogs including sofosbuvir. The Journal of Biological Chemistry |
Wang H, Huang N, Dangerfield T, et al. (2020) Exploring the Reaction Mechanism of HIV RT with a Nucleotide Substrate. The Journal of Physical Chemistry. B |