Research Article
Deduced amino acid sequence of Escherichia coli adenosine deaminase reveals evolutionarily conserved amino acid residues: implications for catalytic function
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This article has been cited by 2 ACS Journal articles (2 most recent appear below).

Adenosine Deaminase-like Protein 1 (ADAL1): Characterization and Substrate Specificity in the Hydrolysis of N6- or O6-Substituted Purine or 2-Aminopurine Nucleoside Monophosphates
Eisuke Murakami, Haiying Bao, Ralph T. Mosley, Jinfa Du, Michael J. Sofia, and Phillip A. FurmanJournal of Medicinal Chemistry2011 Article ASAPAdenosine Deaminase-like Protein 1 (ADAL1): Characterization and Substrate Specificity in the Hydrolysis of N6- or O6-Substituted Purine or 2-Aminopurine Nucleoside Monophosphates
Eisuke Murakami, Haiying Bao, Ralph T. Mosley, Jinfa Du, Michael J. Sofia, and Phillip A. FurmanJournal of Medicinal Chemistry2011 Article ASAPHuman N6-methyl-AMP/dAMP aminohydrolase has been shown to be involved in metabolism of pharmacologically important N6-substituted purine nucleosides and 5′-monophosphate prodrugs thereof. This enzyme was cloned and expressed in E. coli, and mass ...

Oxanosine Is a Substrate of Adenosine Deaminase. Implications for the Quest for a Toxicological Marker for Nitrosation Activity
Papiya Majumdar, Hong Wu, Peter Tipton, and Rainer GlaserChemical Research in Toxicology2005 18 (12), 1830-1841Oxanosine Is a Substrate of Adenosine Deaminase. Implications for the Quest for a Toxicological Marker for Nitrosation Activity
Papiya Majumdar, Hong Wu, Peter Tipton, and Rainer GlaserChemical Research in Toxicology2005 18 (12), 1830-1841Oxanosine 3r, 5-amino-3--(d-ribofuranosyl)-3H-imidazo[4,5-d][1,3]oxazine-7-one, was isolated as a novel nucleoside antibiotic in 1981 from Streptomyces capreolus MG265-CF3. Oxanosine became relevant in toxicology in 1996 with the discovery that it is ...
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- Published In Issue February, 1991
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