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Physiology (Bethesda, Md.)|February 13, 2025
HIF2α: the interface between oxygen-sensing systems in physiology and pathologyTammie Bishop, Peter J RatcliffeHypoxia (Auckland, N.Z.)|December 5, 2014
Signaling hypoxia by hypoxia-inducible factor protein hydroxylases: a historical overview and future perspectivesTammie Bishop, Peter J RatcliffeScience Signaling|January 23, 2020
Genetic basis of oxygen sensing in the carotid body: HIF2α and an isoform switch in cytochrome c oxidase subunit 4Tammie Bishop, Peter J RatcliffeCirculation Research|June 20, 2015
HIF hydroxylase pathways in cardiovascular physiology and medicineTammie Bishop, Peter J RatcliffeHypoxia (Auckland, N.Z.)|November 2, 2016
Hyperplasia and hypertrophy of pulmonary neuroepithelial bodies, presumed airway hypoxia sensors, in hypoxia-inducible factor prolyl hydroxylase-deficient miceJie Pan, Tammie Bishop, Peter J Ratcliffe, et al.The Journal of Physiology|May 23, 2012
Roles of individual prolyl-4-hydroxylase isoforms in the first 24 hours following transient focal cerebral ischaemia: insights from genetically modified miceRuo-Li Chen, Simon Nagel, Michalis Papadakis, 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 RatcliffePageof 18