Steven G. Van Lanen, Ph.D.
Affiliations: | 2003 | Portland State University, Portland, OR, United States |
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BiochemistryGoogle:
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Sign in to add mentorDirk Iwata-Reuyl | grad student | 2003 | Portland State University | |
(Enzymology during queuosine biosynthesis: S-adenosylmethionine:tRNA ribosyltransferase-isomerase and NADPH:7 -cyano -7 -deazaguanine oxidoreductase.) |
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Publications
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Daniel-Ivad PG, Van Lanen S, Ryan KS. (2023) Structure of the Oxygen, Pyridoxal Phosphate-Dependent Capuramycin Biosynthetic Protein Cap15. Biochemistry |
Clinger JA, Zhang Y, Liu Y, et al. (2021) Structure and Function of a Dual Reductase-Dehydratase Enzyme System Involved in -Terphenyl Biosynthesis. Acs Chemical Biology |
Cui Z, Overbay J, Wang X, et al. (2020) Pyridoxal-5'-phosphate-dependent alkyl transfer in nucleoside antibiotic biosynthesis. Nature Chemical Biology |
Cui Z, Liu X, Overbay J, et al. (2018) Enzymatic Synthesis of the Ribosylated Glycyl-Uridine Disaccharide Core of Peptidyl Nucleoside Antibiotics. The Journal of Organic Chemistry |
Cui Z, Wang XC, Liu X, et al. (2018) Self-Resistance During Muraymycin Biosynthesis: A Complementary Nucleotidyltransferase and Phosphotransferase with Identical Modification Sites and Distinct Temporal Order. Antimicrobial Agents and Chemotherapy |
Koppermann S, Cui Z, Fischer PD, et al. (2018) Insights into the Target Interaction of Naturally Occurring Muraymycin Nucleoside Antibiotics. Chemmedchem |
Huang Y, Liu X, Cui Z, et al. (2018) Pyridoxal-5'-phosphate as an oxygenase cofactor: Discovery of a carboxamide-forming, α-amino acid monooxygenase-decarboxylase. Proceedings of the National Academy of Sciences of the United States of America |
Goswami A, Liu X, Cai W, et al. (2017) Evidence that Oxidative Dephosphorylation by the Non-heme Fe(II), α-Ketoglutarate:UMP Oxygenase Occurs by Stereospecific Hydroxylation. Febs Letters |
Huber TD, Wang F, Singh S, et al. (2016) Functional AdoMet isosteres resistant to classical AdoMet degradation pathways. Acs Chemical Biology |
Liu X, Jin Y, Cai W, et al. (2016) A biocatalytic approach to capuramycin analogues by exploiting a substrate permissive N-transacylase CapW. Organic & Biomolecular Chemistry |