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Chemistry & Biology|December 21, 2010
Structural and mechanistic studies on γ-butyrobetaine hydroxylaseIvanhoe K H Leung, Tobias J Krojer, Grazyna T Kochan, et al.Journal of Medicinal Chemistry|August 1, 2013
Assay platform for clinically relevant metallo-β-lactamasesSander S van Berkel, Jürgen Brem, Anna M Rydzik, et al.Bioorganic & Medicinal Chemistry Letters|June 1, 2002
The use of dioxygen by HIF prolyl hydroxylase (PHD1)Luke A McNeill, Kirsty S Hewitson, Jonathan M Gleadle, et al.Chemistry (Weinheim an Der Bergstrasse, Germany)|December 19, 2017
Cyclobutanone Mimics of Intermediates in Metallo-β-Lactamase CatalysisMartine I Abboud, Magda Kosmopoulou, Anthony P Krismanich, et al.Nature Communications|March 24, 2017
Plant cysteine oxidases are dioxygenases that directly enable arginyl transferase-catalysed arginylation of N-end rule targetsMark D White, Maria Klecker, Richard J Hopkinson, et al.Communications Biology|November 2, 2021
Roles of metal ions in the selective inhibition of oncogenic variants of isocitrate dehydrogenase 1Shuang Liu, Martine I Abboud, Tobias John, et al.Chemmedchem|January 27, 2022
Mass Spectrometric Assays Reveal Discrepancies in Inhibition Profiles for the SARS-CoV-2 Papain-Like ProteaseLennart Brewitz, Jos J A G Kamps, Petra Lukacik, et al.Chemical Communications (Cambridge, England)|December 15, 2010
Photoactivable peptides for identifying enzyme-substrate and protein-protein interactionsDante Rotili, Mikael Altun, Refaat B Hamed, et al.Communications Biology|May 21, 2020
Anion-exchange chromatography mass spectrometry provides extensive coverage of primary metabolic pathways revealing altered metabolism in IDH1 mutant cellsJohn Walsby-Tickle, Joan Gannon, Ingvild Hvinden, et al.Nucleic Acids Research|August 13, 2021
Structural and mechanistic insights into the Artemis endonuclease and strategies for its inhibitionYuliana Yosaatmadja, Hannah T Baddock, Joseph A Newman, et al.Pageof 59