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Thomas P Keeley

Showing results (1-10 of 15) with videos related to

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Methods in Enzymology|August 2, 2023
Monitoring ADO dependent proteolysis in cells using fluorescent reporter proteinsEleanor Smith, Thomas P Keeley
Physiological Reviews|October 26, 2018
Defining Physiological Normoxia for Improved Translation of Cell Physiology to Animal Models and HumansThomas P Keeley, Giovanni E Mann
Proceedings of the National Academy of Sciences of the United States of America|August 19, 2025
Nitric oxide promotes cysteine N-degron proteolysis through control of oxygen availabilityHaeun Kim, Ya-Min Tian, Peter J Ratcliffe, et al.
FASEB Journal : Official Publication of the Federation of American Societies for Experimental Biology|December 24, 2017
Reduced SERCA activity underlies dysregulation of Ca<sup>2+</sup> homeostasis under atmospheric O<sub>2</sub> levelsThomas P Keeley, Richard C M Siow, Ron Jacob, et al.
FASEB Journal : Official Publication of the Federation of American Societies for Experimental Biology|August 2, 2017
A PP2A-mediated feedback mechanism controls Ca<sup>2+</sup>-dependent NO synthesis under physiological oxygenThomas P Keeley, Richard C M Siow, Ron Jacob, et al.
The Journal of Biological Chemistry|August 12, 2023
Comparative analysis of N-terminal cysteine dioxygenation and prolyl-hydroxylation as oxygen-sensing pathways in mammalian cellsYa-Min Tian, Philip Holdship, Trang Quynh To, et al.
Redox Biology|September 19, 2020
Nrf2-regulated redox signaling in brain endothelial cells adapted to physiological oxygen levels: Consequences for sulforaphane mediated protection against hypoxia-reoxygenationGabriela Warpsinski, Matthew J Smith, Salil Srivastava, et al.
Free Radical Biology & Medicine|December 25, 2015
Bach1 differentially regulates distinct Nrf2-dependent genes in human venous and coronary artery endothelial cells adapted to physiological oxygen levelsSarah J Chapple, Thomas P Keeley, Daniela Mastronicola, et al.
Nature Communications|June 25, 2024
N-terminal cysteine acetylation and oxidation patterns may define protein stabilityKaren C Heathcote, Thomas P Keeley, Matti Myllykoski, et al.
Nature Communications|April 9, 2026
Prolyl hydroxylase-dependent proteolysis enables the orthogonal hypoxia responses in plantsVinay Shukla, Sergio Iacopino, Laura Dalle Carbonare, et al.
Pageof 2

Showing results (1-10 of 15) with videos related to

Sort By:
Pageof 2
Methods in Enzymology|August 2, 2023
Monitoring ADO dependent proteolysis in cells using fluorescent reporter proteinsEleanor Smith, Thomas P Keeley
Physiological Reviews|October 26, 2018
Defining Physiological Normoxia for Improved Translation of Cell Physiology to Animal Models and HumansThomas P Keeley, Giovanni E Mann
Proceedings of the National Academy of Sciences of the United States of America|August 19, 2025
Nitric oxide promotes cysteine N-degron proteolysis through control of oxygen availabilityHaeun Kim, Ya-Min Tian, Peter J Ratcliffe, et al.
FASEB Journal : Official Publication of the Federation of American Societies for Experimental Biology|December 24, 2017
Reduced SERCA activity underlies dysregulation of Ca<sup>2+</sup> homeostasis under atmospheric O<sub>2</sub> levelsThomas P Keeley, Richard C M Siow, Ron Jacob, et al.
FASEB Journal : Official Publication of the Federation of American Societies for Experimental Biology|August 2, 2017
A PP2A-mediated feedback mechanism controls Ca<sup>2+</sup>-dependent NO synthesis under physiological oxygenThomas P Keeley, Richard C M Siow, Ron Jacob, et al.
The Journal of Biological Chemistry|August 12, 2023
Comparative analysis of N-terminal cysteine dioxygenation and prolyl-hydroxylation as oxygen-sensing pathways in mammalian cellsYa-Min Tian, Philip Holdship, Trang Quynh To, et al.
Redox Biology|September 19, 2020
Nrf2-regulated redox signaling in brain endothelial cells adapted to physiological oxygen levels: Consequences for sulforaphane mediated protection against hypoxia-reoxygenationGabriela Warpsinski, Matthew J Smith, Salil Srivastava, et al.
Free Radical Biology & Medicine|December 25, 2015
Bach1 differentially regulates distinct Nrf2-dependent genes in human venous and coronary artery endothelial cells adapted to physiological oxygen levelsSarah J Chapple, Thomas P Keeley, Daniela Mastronicola, et al.
Nature Communications|June 25, 2024
N-terminal cysteine acetylation and oxidation patterns may define protein stabilityKaren C Heathcote, Thomas P Keeley, Matti Myllykoski, et al.
Nature Communications|April 9, 2026
Prolyl hydroxylase-dependent proteolysis enables the orthogonal hypoxia responses in plantsVinay Shukla, Sergio Iacopino, Laura Dalle Carbonare, et al.
Pageof 2