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9V0W

UDP-Glc:tetrahydrobiopterin glucosyltransferase from Pseudanabaena sp. Chao 1811

Summary for 9V0W
Entry DOI10.2210/pdb9v0w/pdb
Descriptortetrahydrobiopterin glucosyltransferase (2 entities in total)
Functional Keywordsudp-glc:tetrahydrobiopterin glucosyltransferase, transferase
Biological sourcePseudanabaena sp. Chao 1811
Total number of polymer chains2
Total formula weight80407.67
Authors
Zang, R.J.,Jiang, Y.L.,Zhou, C.Z. (deposition date: 2025-05-19, release date: 2025-11-26, Last modification date: 2025-12-17)
Primary citationZang, R.,Jiang, Y.,Zhou, C.Z.
Structural analysis of the tetrahydrobiopterin glucosyltransferase PsBGluT from Pseudanabaena sp. Chao 1811.
Acta Crystallogr.,Sect.F, 81:495-504, 2025
Cited by
PubMed Abstract: Pterin glycosides are widely distributed in cyanobacteria and have been implicated in the regulation of phototaxis and photosynthesis. Here, we identified a new uridine diphosphate glucose:tetrahydrobiopterin α-glucosyltransferase, termed PsBGluT, from Pseudanabaena sp. Chao 1811, which catalyzes the formation of pterin glycosides. We solved crystal structures of apo PsBGluT and its UDP-bound form at 2.8 and 2.3 Å resolution, respectively. PsBGluT forms a homodimer, with each subunit adopting a canonical GT-B fold composed of two Rossmann-like domains. Structural analysis combined with molecular docking revealed the binding sites for both the donor UDP-glucose and the acceptor tetrahydrobiopterin. Based on these findings, we proposed that PsBGluT operates via an Si retaining catalytic mechanism. This study advances our understanding of pteridine glycosylation and also provides a structural basis for investigating the photosynthetic signaling pathways in cyanobacteria.
PubMed: 41231237
DOI: 10.1107/S2053230X25009446
PDB entries with the same primary citation
Experimental method
X-RAY DIFFRACTION (2.8 Å)
Structure validation

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