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1. Structural and chemical trapping of flavin‐oxide intermediates reveals substrate‐directed reaction multiplicity

2. The flavin mononucleotide cofactor in α‐hydroxyacid oxidases exerts its electrophilic/nucleophilic duality in control of the substrate‐oxidation level

3. Biochemical and structural explorations of α‐hydroxyacid oxidases reveal a four‐electron oxidative decarboxylation reaction

6. Structural and chemical trapping of flavin-oxide intermediates reveals substrate-directed reaction multiplicity

7. Biochemical and structural explorations of α-hydroxyacid oxidases reveal a four-electron oxidative decarboxylation reaction

8. Teicoplanin Reprogrammed with the N-Acyl-Glucosamine Pharmacophore at the Penultimate Residue of Aglycone Acquires Broad-Spectrum Antimicrobial Activities Effectively Killing Gram-Positive and -Negative Pathogens

11. The Mesomeric Effect of Thiazolium on non‐Kekulé Diradicals in <italic>Pichia stipitis</italic> Transketolase.

13. Multiple Complexes of Long Aliphatic N-Acyltransferases Lead to Synthesis of 2,6-Diacylated/2-Acyl-Substituted Glycopeptide Antibiotics, Effectively Killing Vancomycin-Resistant Enterococcus

14. Structure and mechanism of a nonhaem-iron SAM-dependentC-methyltransferase and its engineering to a hydratase and anO-methyltransferase

20. In vitro Characterization of Enzymes Involved in the Synthesis of Nonproteinogenic Residue (2S,3S)-β-Methylphenylalanine in Glycopeptide Antibiotic Mannopeptimycin

22. Structure and mechanism of a nonhaem-iron SAM-dependent C-methyltransferase and its engineering to a hydratase and an O-methyltransferase.

24. The Mesomeric Effect of Thiazolium on non-Kekulé Diradicals in Pichia stipitis Transketolase.

25. Insights into the binding specificity and catalytic mechanism of N-acetylhexosamine 1-phosphate kinases through multiple reaction complexes.

26. In vitro characterization of enzymes involved in the synthesis of nonproteinogenic residue (2S,3S)-beta-methylphenylalanine in glycopeptide antibiotic mannopeptimycin.

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