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Publications by Chanakan Tongsook
pH-dependent Studies Reveal an Efficient Hydroxylation Mechanism of the Oxygenase Component Ofp-Hydroxyphenylacetate 3-Hydroxylase
Journal of Biological Chemistry
Biochemistry
Cell Biology
Molecular Biology
Structural and Kinetic Studies on RosA, the Enzyme Catalysing the Methylation of 8-Demethyl-8-Amino-D -Riboflavin to the Antibiotic Roseoflavin
FEBS Journal
Biochemistry
Cell Biology
Molecular Biology
Related publications
Studies on the Mechanism Ofp-Hydroxyphenylacetate 3-Hydroxylase fromPseudomonas Aeruginosa: A System Composed of a Small Flavin Reductase and a Large Flavin-Dependent Oxygenase
Biochemistry
Biochemistry
Crystal Structure Analyses of Oxygenase Component of Resorcinol Hydroxylase
Acta Crystallographica Section A: Foundations and Advances
Materials Science
Condensed Matter Physics
Theoretical Chemistry
Biochemistry
Structural Biology
Inorganic Chemistry
Physical
Regulation of Proline 3-Hydroxylation and Prolyl 3-Hydroxylase and 4-Hydroxylase Activities in Transformed Cells
Biochemical Journal
Biochemistry
Cell Biology
Molecular Biology
Microbial Hydroxylation of Steroids. 9. Epoxidation of Δ6-3-Ketosteroids byRhizopusarrhizusATCC 11145, and the Mechanism of the 6β Hydroxylase Enzyme
Canadian Journal of Chemistry
Organic Chemistry
Catalysis
Chemistry
25-Hydroxycholesterol Activates the Expression of Cholesterol 25-Hydroxylase in an LXR-dependent Mechanism
Journal of Lipid Research
Biochemistry
Endocrinology
Cell Biology
Characterization of 4-Hydroxyphenylacetate 3-Hydroxylase (HpaB) of Escherichia Coli as a Reduced Flavin Adenine Dinucleotide-Utilizing Monooxygenase
Applied and Environmental Microbiology
Applied Microbiology
Biotechnology
Ecology
Food Science
Redox and pH Microenvironments withinShewanella oneidensisMR-1 Biofilms Reveal an Electron Transfer Mechanism
Environmental Science & Technology
Medicine
Environmental Chemistry
Chemistry
Mechanism of OmpG pH-Dependent Gating From Loop Ensemble and Single Channel Studies
Spectroscopic Studies Reveal That the Heme Regulatory Motifs of Heme Oxygenase-2 Are Dynamically Disordered and Exhibit Redox-Dependent Interaction With Heme
Biochemistry
Biochemistry