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29ST

Azetidine-1- carboxylic acid synthase AzeJ from Saccharotrix sp. NRRL B-16348

Summary for 29ST
Entry DOI10.2210/pdb29st/pdb
DescriptorMethyltransferase family protein (2 entities in total)
Functional Keywordsazej, azetidine-1- carboxylic acid, sam, sah, methyl-transferase, natural products, lyase
Biological sourceSaccharothrix sp. NRRL B-16348
Total number of polymer chains5
Total formula weight135098.60
Authors
Lukat, P.,Oral, G.,Blankenfeldt, W. (deposition date: 2026-04-07, release date: 2026-08-05)
Primary citationGermer, P.,Gericke, L.,Koeppl, L.H.,Zou, Z.,Jockmann, E.,Kuge, M.,Zoller, K.,Herrmann, H.,Fuderer, R.,Mohr, M.K.F.,Bartels, A.,Oral, G.,Lukat, P.,Layer, G.,Muller, M.,Blankenfeldt, W.,Barra, L.,Andexer, J.N.
S-Adenosyl-d-Methionine as a Non-Physiological Substrate for a Wide Range of SAM-Dependent Enzymes.
Chembiochem, 27:e70467-e70467, 2026
Cited by
PubMed Abstract: The ability of SAM-dependent enzymes to accept S-adenosyl-d-methionine [d-SAM, (S,R)-SAM] instead of the native cofactor S-adenosyl-l-methionine [l-SAM, (S,S)-SAM] remains largely unexplored. Challenging the stereochemical preference of SAM-dependent enzymes, we investigated the ability of different enzyme classes to accept d-SAM. Contrary to common assumptions, the tested N- and O-methyltransferases (MTs), as well as one of the examined C-MTs accepted d-SAM. Docking studies suggest that acceptance of d-SAM by C-MTs may be influenced by the angle between the transferable methyl group of SAM and the nucleophilic carbon of the substrate, along with enzyme and substrate flexibility. In addition to conventional MTs, the radical SAM glutamine C-MT QCMT showed low but detectable methylation activity with d-SAM. Furthermore, the azetidine-2-carboxylic acid synthase AzeJ not only uses d-SAM but also incorporates the stereocentre of d-methionine into the cyclic amino acid product. The pyridoxal 5'-phosphate (PLP)-dependent enzyme 1-aminocyclopropyl-1-carboxylic acid synthase (ACCS) also showed detectable turnover with d-SAM. These findings broaden the understanding of enzyme stereoselectivity, provide an overview of d-SAM-utilising enzymes, and identify the first enzyme systems that may serve as starting points for engineering efforts aimed at shifting cofactor preference towards d-SAM.
PubMed: 42503187
DOI: 10.1002/cbic.70467
PDB entries with the same primary citation
Experimental method
X-RAY DIFFRACTION (2.67 Å)
Structure validation

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PDB entries from 2026-08-12

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