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Journal of Inorganic Biochemistry
|
June 2, 2022
Structural insights into the design of reversible fluorescent probes for metallo-β-lactamases NDM-1, VIM-2, and IMP-1
Sky Price, Radhika Mehta, Dominique Tan, et al.
Biochemistry
|
July 17, 2008
Mechanism of the quorum-quenching lactonase (AiiA) from Bacillus thuringiensis. 2. Substrate modeling and active site mutations
Jessica Momb, Canhui Wang, Dali Liu, et al.
Biochemistry
|
February 8, 2013
A phenylalanine clamp controls substrate specificity in the quorum-quenching metallo-γ-lactonase from Bacillus thuringiensis
Ce Feng Liu, Dali Liu, Jessica Momb, et al.
Biochemistry
|
June 3, 2025
Characterization of Lipidated New Delhi Metallo-β-lactamase Using Synthetic Nanodiscs
Thomas Smisek, Nemanja Vuksanovic, Jada N Walker, et al.
Chemical Science
|
December 20, 2019
Investigation of GTP-dependent dimerization of G12X K-Ras variants using ultraviolet photodissociation mass spectrometry
M Rachel Mehaffey, Christopher L Schardon, Elisa T Novelli, et al.
Journal of the American Chemical Society
|
June 3, 2011
On the mechanism of dimethylarginine dimethylaminohydrolase inactivation by 4-halopyridines
Corey M Johnson, Arthur F Monzingo, Zhihong Ke, et al.
Chemmedchem
|
April 22, 2020
Iminodiacetic Acid as a Novel Metal-Binding Pharmacophore for New Delhi Metallo-β-lactamase Inhibitor Development
Allie Y Chen, Caitlyn A Thomas, Pei W Thomas, et al.
ACS Omega
|
June 7, 2021
Cyclobutanone Inhibitor of Cobalt-Functionalized Metallo-γ-Lactonase AiiA with Cyclobutanone Ring Opening in the Active Site
Cory T Reidl, Romila Mascarenhas, Thahani S Habeeb Mohammad, et al.
ACS Chemical Biology
|
February 11, 2017
Substrate Trapping in the Siderophore Tailoring Enzyme PvdQ
Kenneth D Clevenger, Romila Mascarenhas, Daniel Catlin, et al.
Chemmedchem
|
May 25, 2019
Investigation of Dipicolinic Acid Isosteres for the Inhibition of Metallo-β-Lactamases
Allie Y Chen, Pei W Thomas, Zishuo Cheng, et al.
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Showing results (51-60 of 73) with videos related to
Sort By:
Page
of 8
Journal of Inorganic Biochemistry
|
June 2, 2022
Structural insights into the design of reversible fluorescent probes for metallo-β-lactamases NDM-1, VIM-2, and IMP-1
Sky Price, Radhika Mehta, Dominique Tan, et al.
Biochemistry
|
July 17, 2008
Mechanism of the quorum-quenching lactonase (AiiA) from Bacillus thuringiensis. 2. Substrate modeling and active site mutations
Jessica Momb, Canhui Wang, Dali Liu, et al.
Biochemistry
|
February 8, 2013
A phenylalanine clamp controls substrate specificity in the quorum-quenching metallo-γ-lactonase from Bacillus thuringiensis
Ce Feng Liu, Dali Liu, Jessica Momb, et al.
Biochemistry
|
June 3, 2025
Characterization of Lipidated New Delhi Metallo-β-lactamase Using Synthetic Nanodiscs
Thomas Smisek, Nemanja Vuksanovic, Jada N Walker, et al.
Chemical Science
|
December 20, 2019
Investigation of GTP-dependent dimerization of G12X K-Ras variants using ultraviolet photodissociation mass spectrometry
M Rachel Mehaffey, Christopher L Schardon, Elisa T Novelli, et al.
Journal of the American Chemical Society
|
June 3, 2011
On the mechanism of dimethylarginine dimethylaminohydrolase inactivation by 4-halopyridines
Corey M Johnson, Arthur F Monzingo, Zhihong Ke, et al.
Chemmedchem
|
April 22, 2020
Iminodiacetic Acid as a Novel Metal-Binding Pharmacophore for New Delhi Metallo-β-lactamase Inhibitor Development
Allie Y Chen, Caitlyn A Thomas, Pei W Thomas, et al.
ACS Omega
|
June 7, 2021
Cyclobutanone Inhibitor of Cobalt-Functionalized Metallo-γ-Lactonase AiiA with Cyclobutanone Ring Opening in the Active Site
Cory T Reidl, Romila Mascarenhas, Thahani S Habeeb Mohammad, et al.
ACS Chemical Biology
|
February 11, 2017
Substrate Trapping in the Siderophore Tailoring Enzyme PvdQ
Kenneth D Clevenger, Romila Mascarenhas, Daniel Catlin, et al.
Chemmedchem
|
May 25, 2019
Investigation of Dipicolinic Acid Isosteres for the Inhibition of Metallo-β-Lactamases
Allie Y Chen, Pei W Thomas, Zishuo Cheng, et al.
Page
of 8