Showing results (1-10 of 176) with videos related to
Sort By:
Pageof 18
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.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.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.The Journal of Clinical Investigation|April 4, 2007
HIF-1 and HIF-2: working alone or together in hypoxia?Peter J RatcliffeBlood Purification|September 11, 2002
From erythropoietin to oxygen: hypoxia-inducible factor hydroxylases and the hypoxia signal pathwayPeter J RatcliffeClinical Medicine (London, England)|January 19, 2007
Understanding hypoxia signalling in cells--a new therapeutic opportunity?Peter J RatcliffeCancer Cell|April 10, 2007
Fumarate hydratase deficiency and cancer: activation of hypoxia signaling?Peter J RatcliffeThe Journal of Physiology|February 13, 2013
Oxygen sensing and hypoxia signalling pathways in animals: the implications of physiology for cancerPeter J RatcliffeScience (New York, N.Y.)|July 6, 2019
Conserved N-terminal cysteine dioxygenases transduce responses to hypoxia in animals and plantsNorma Masson, Thomas P Keeley, Beatrice Giuntoli, et al.Methods in Enzymology|August 2, 2023
Monitoring ADO dependent proteolysis in cells using fluorescent reporter proteinsEleanor Smith, Thomas P KeeleyPageof 18