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Methods in Molecular Biology (Clifton, N.J.)
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August 25, 2021
A High-Throughput Method to Prioritize PROTAC Intracellular Target Engagement and Cell Permeability Using NanoBRET
James D Vasta, Cesear R Corona, Matthew B Robers
SLAS Discovery : Advancing Life Sciences R & D
|
March 23, 2025
Development of a cell-based target engagement assay for pyruvate dehydrogenase kinase
Mya D Gough, Matthew B Robers, Cesear R Corona, et al.
ACS Chemical Biology
|
August 24, 2018
Quantitative Live-Cell Kinetic Degradation and Mechanistic Profiling of PROTAC Mode of Action
Kristin M Riching, Sarah Mahan, Cesear R Corona, et al.
Methods in Molecular Biology (Clifton, N.J.)
|
December 7, 2018
Quantitative, Real-Time Measurements of Intracellular Target Engagement Using Energy Transfer
Matthew B Robers, James D Vasta, Cesear R Corona, et al.
Cell Chemical Biology
|
November 15, 2016
Selective JAK3 Inhibitors with a Covalent Reversible Binding Mode Targeting a New Induced Fit Binding Pocket
Michael Forster, Apirat Chaikuad, Silke M Bauer, et al.
Nature Chemical Biology
|
March 22, 2022
KRAS is vulnerable to reversible switch-II pocket engagement in cells
James D Vasta, D Matthew Peacock, Qinheng Zheng, et al.
Nature Chemical Biology
|
October 27, 2022
Small-molecule inhibition of the archetypal UbiB protein COQ8
Nathan H Murray, Christopher R M Asquith, Zixiang Fang, et al.
Cell Chemical Biology
|
July 25, 2023
DELs enable the development of BRET probes for target engagement studies in cells
Kelly A Teske, Wenji Su, Cesear R Corona, et al.
Frontiers in Cell and Developmental Biology
|
June 20, 2022
A Toolbox for the Generation of Chemical Probes for Baculovirus IAP Repeat Containing Proteins
Martin P Schwalm, Lena M Berger, Maximilian N Meuter, et al.
Journal of Medicinal Chemistry
|
October 20, 2021
Design of a "Two-in-One" Mutant-Selective Epidermal Growth Factor Receptor Inhibitor That Spans the Orthosteric and Allosteric Sites
Florian Wittlinger, David E Heppner, Ciric To, et al.
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Search research articles
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Showing results (1-10 of 14) with videos related to
Sort By:
Page
of 2
Methods in Molecular Biology (Clifton, N.J.)
|
August 25, 2021
A High-Throughput Method to Prioritize PROTAC Intracellular Target Engagement and Cell Permeability Using NanoBRET
James D Vasta, Cesear R Corona, Matthew B Robers
SLAS Discovery : Advancing Life Sciences R & D
|
March 23, 2025
Development of a cell-based target engagement assay for pyruvate dehydrogenase kinase
Mya D Gough, Matthew B Robers, Cesear R Corona, et al.
ACS Chemical Biology
|
August 24, 2018
Quantitative Live-Cell Kinetic Degradation and Mechanistic Profiling of PROTAC Mode of Action
Kristin M Riching, Sarah Mahan, Cesear R Corona, et al.
Methods in Molecular Biology (Clifton, N.J.)
|
December 7, 2018
Quantitative, Real-Time Measurements of Intracellular Target Engagement Using Energy Transfer
Matthew B Robers, James D Vasta, Cesear R Corona, et al.
Cell Chemical Biology
|
November 15, 2016
Selective JAK3 Inhibitors with a Covalent Reversible Binding Mode Targeting a New Induced Fit Binding Pocket
Michael Forster, Apirat Chaikuad, Silke M Bauer, et al.
Nature Chemical Biology
|
March 22, 2022
KRAS is vulnerable to reversible switch-II pocket engagement in cells
James D Vasta, D Matthew Peacock, Qinheng Zheng, et al.
Nature Chemical Biology
|
October 27, 2022
Small-molecule inhibition of the archetypal UbiB protein COQ8
Nathan H Murray, Christopher R M Asquith, Zixiang Fang, et al.
Cell Chemical Biology
|
July 25, 2023
DELs enable the development of BRET probes for target engagement studies in cells
Kelly A Teske, Wenji Su, Cesear R Corona, et al.
Frontiers in Cell and Developmental Biology
|
June 20, 2022
A Toolbox for the Generation of Chemical Probes for Baculovirus IAP Repeat Containing Proteins
Martin P Schwalm, Lena M Berger, Maximilian N Meuter, et al.
Journal of Medicinal Chemistry
|
October 20, 2021
Design of a "Two-in-One" Mutant-Selective Epidermal Growth Factor Receptor Inhibitor That Spans the Orthosteric and Allosteric Sites
Florian Wittlinger, David E Heppner, Ciric To, et al.
Page
of 2