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Methods in Molecular Biology (Clifton, N.J.)
|
July 22, 2017
CRISPR-Cas RNA Scaffolds for Transcriptional Programming in Yeast
Jesse G Zalatan
Journal of the American Chemical Society
|
January 26, 2006
Alkaline phosphatase mono- and diesterase reactions: comparative transition state analysis
Jesse G Zalatan, Daniel Herschlag
Nature Chemical Biology
|
July 22, 2009
The far reaches of enzymology
Jesse G Zalatan, Daniel Herschlag
Current Opinion in Biotechnology
|
January 14, 2024
Engineering bacteria for cancer immunotherapy
Jesse G Zalatan, Lorenzo Petrini, Roger Geiger
Biochemistry
|
May 21, 2020
The Relationship between Effective Molarity and Affinity Governs Rate Enhancements in Tethered Kinase-Substrate Reactions
Elizabeth B Speltz, Jesse G Zalatan
Trends in Biochemical Sciences
|
February 22, 2022
A kinetic mechanism for systems-level behavior in GTPase signaling
Noel Jameson, Maire Gavagan, Jesse G Zalatan
Elife
|
August 7, 2023
The Axin scaffold protects the kinase GSK3β from cross-pathway inhibition
Maire Gavagan, Noel Jameson, Jesse G Zalatan
Biochemistry
|
October 10, 2014
Probing the origins of catalytic discrimination between phosphate and sulfate monoester hydrolysis: comparative analysis of alkaline phosphatase and protein tyrosine phosphatases
Logan D Andrews, Jesse G Zalatan, Daniel Herschlag
Journal of Molecular Biology
|
October 15, 2008
Comparative enzymology in the alkaline phosphatase superfamily to determine the catalytic role of an active-site metal ion
Jesse G Zalatan, Timothy D Fenn, Daniel Herschlag
Annual Review of Biochemistry
|
April 26, 2011
Biological phosphoryl-transfer reactions: understanding mechanism and catalysis
Jonathan K Lassila, Jesse G Zalatan, Daniel Herschlag
Page
of 5
Search research articles
Search
Showing results (1-10 of 43) with videos related to
Sort By:
Page
of 5
Methods in Molecular Biology (Clifton, N.J.)
|
July 22, 2017
CRISPR-Cas RNA Scaffolds for Transcriptional Programming in Yeast
Jesse G Zalatan
Journal of the American Chemical Society
|
January 26, 2006
Alkaline phosphatase mono- and diesterase reactions: comparative transition state analysis
Jesse G Zalatan, Daniel Herschlag
Nature Chemical Biology
|
July 22, 2009
The far reaches of enzymology
Jesse G Zalatan, Daniel Herschlag
Current Opinion in Biotechnology
|
January 14, 2024
Engineering bacteria for cancer immunotherapy
Jesse G Zalatan, Lorenzo Petrini, Roger Geiger
Biochemistry
|
May 21, 2020
The Relationship between Effective Molarity and Affinity Governs Rate Enhancements in Tethered Kinase-Substrate Reactions
Elizabeth B Speltz, Jesse G Zalatan
Trends in Biochemical Sciences
|
February 22, 2022
A kinetic mechanism for systems-level behavior in GTPase signaling
Noel Jameson, Maire Gavagan, Jesse G Zalatan
Elife
|
August 7, 2023
The Axin scaffold protects the kinase GSK3β from cross-pathway inhibition
Maire Gavagan, Noel Jameson, Jesse G Zalatan
Biochemistry
|
October 10, 2014
Probing the origins of catalytic discrimination between phosphate and sulfate monoester hydrolysis: comparative analysis of alkaline phosphatase and protein tyrosine phosphatases
Logan D Andrews, Jesse G Zalatan, Daniel Herschlag
Journal of Molecular Biology
|
October 15, 2008
Comparative enzymology in the alkaline phosphatase superfamily to determine the catalytic role of an active-site metal ion
Jesse G Zalatan, Timothy D Fenn, Daniel Herschlag
Annual Review of Biochemistry
|
April 26, 2011
Biological phosphoryl-transfer reactions: understanding mechanism and catalysis
Jonathan K Lassila, Jesse G Zalatan, Daniel Herschlag
Page
of 5