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Experimental Cell Research|November 18, 2008
The trafficking and regulation of membrane receptors by the RING-CH ubiquitin E3 ligasesJames A Nathan, Paul J LehnerCellular and Molecular Life Sciences : CMLS|May 4, 2016
The recognition of ubiquitinated proteins by the proteasomeGuinevere L Grice, James A NathanNature Genetics|June 22, 2021
The HIF complex recruits the histone methyltransferase SET1B to activate specific hypoxia-inducible genesBrian M Ortmann, Natalie Burrows, Ian T Lobb, et al.Biomedicines|May 19, 2018
Metabolic Regulation of Hypoxia-Inducible Transcription Factors: The Role of Small Molecule Metabolites and IronPeter S J Bailey, James A NathanThe Journal of Biological Chemistry|August 23, 2013
The ATP costs and time required to degrade ubiquitinated proteins by the 26 S proteasomeAndreas Peth, James A Nathan, Alfred L GoldbergNature Reviews. Drug Discovery|January 1, 2015
Muscle wasting in disease: molecular mechanisms and promising therapiesShenhav Cohen, James A Nathan, Alfred L GoldbergJournal of Immunology (Baltimore, Md. : 1950)|May 21, 2010
Stabilization of an E3 ligase-E2-ubiquitin complex increases cell surface MHC class I expressionLidia M Duncan, James A Nathan, Paul J LehnerPlos Biology|February 3, 2023
LRRC15 mediates an accessory interaction with the SARS-CoV-2 spike proteinJarrod Shilts, Thomas W M Crozier, Ana Teixeira-Silva, et al.The EMBO Journal|July 15, 2024
Deubiquitinating enzyme mutagenesis screens identify a USP43-dependent HIF-1 transcriptional responseTekle Pauzaite, Niek Wit, Rachel V Seear, et al.Elife|March 16, 2017
The vacuolar-ATPase complex and assembly factors, TMEM199 and CCDC115, control HIF1α prolyl hydroxylation by regulating cellular iron levelsAnna L Miles, Stephen P Burr, Guinevere L Grice, et al.Pageof 7