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21DW

Crystal structure of sulX in complex with FMN and sulfamethoxazole

Summary for 21DW
Entry DOI10.2210/pdb21dw/pdb
DescriptorSulfonamide monooxygenase, DI(HYDROXYETHYL)ETHER, FLAVIN MONONUCLEOTIDE, ... (7 entities in total)
Functional Keywordsfmn-dependent, sulfonamide resistance, sulfonamide degradation, oxidoreductase
Biological sourceMicrobacterium sp. CJ77
Total number of polymer chains1
Total formula weight47072.29
Authors
Hu, Y.M.,Liu, W.H.,Zhang, Q.S.,Gao, Z.D.,Zhang, H.L.,Li, H.,Dai, L.H. (deposition date: 2025-12-09, release date: 2026-09-30)
Primary citationHu, Y.,Liu, W.,Zhang, Q.,Gao, Z.,Zhang, H.,Li, H.,Dai, L.
Structural insights into sulfonamide degradation by a two-component flavin-dependent monooxygenase.
J Hazard Mater, 517:143643-143643, 2026
Cited by
PubMed Abstract: The sulfonamide-degrading monooxygenase sulX plays a dual role in bioremediation and antibiotic resistance, yet its molecular mechanism remains elusive. Here we report crystal structures of sulX in its ligand-free form, as an FMN-bound binary complex, and as ternary complexes with six distinct sulfonamides at resolutions ranging from 2.09 to 3.03 Å. These structures reveal that sulfonamides bind on the re face of the flavin isoalloxazine ring, with their conserved 4-aminophenol and sulfonyl moieties tightly anchored by π-stacking and hydrogen-bonding interactions, while the divergent aminated substituents extend into an open cleft with minimal specific contacts-a feature that explains the enzyme's remarkable capacity to accommodate diverse sulfonamide substrates. By integrating structural and biochemical data, we propose a catalytic mechanism involving F265-mediated substrate gating and H397-facilitated proton transfer. In addition, structure-based engineering yielded enhanced variants: A399S, which introduces new hydrogen bonds, showed a 37% increase in activity, and P422K achieved a 29% improvement. Our findings establish the structural basis of sulX-mediated sulfonamide degradation and provide a foundation for understanding sulfonamide resistance mechanisms.
PubMed: 42748825
DOI: 10.1016/j.jhazmat.2026.143643
PDB entries with the same primary citation
Experimental method
X-RAY DIFFRACTION (2.46 Å)
Structure validation

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