2OG7 image
Deposition Date 2007-01-05
Release Date 2007-03-06
Last Version Date 2023-08-30
Entry Detail
PDB ID:
2OG7
Title:
Cystal structure of asparagine oxygenase in complex with Fe(II), 2S,3S-3-hydroxyasparagine and succinate
Biological Source:
Source Organism:
Method Details:
Experimental Method:
Resolution:
1.66 Å
R-Value Free:
0.18
R-Value Work:
0.16
R-Value Observed:
0.16
Space Group:
P 31 2 1
Macromolecular Entities
Structures with similar UniProt ID
Protein Blast
Polymer Type:polypeptide(L)
Molecule:asparagine oxygenase
Gene (Uniprot):asnO
Chain IDs:A
Chain Length:357
Number of Molecules:1
Biological Source:Streptomyces coelicolor A3(2)
Primary Citation
Mechanistic and structural basis of stereospecific Cbeta-hydroxylation in calcium-dependent antibiotic, a daptomycin-type lipopeptide
Acs Chem.Biol. 2 187 196 (2007)
PMID: 17373765 DOI: 10.1021/cb700012y

Abstact

Non-ribosomally synthesized lipopeptide antibiotics of the daptomycin type are known to contain unnatural beta-modified amino acids, which are essential for bioactivity. Here we present the biochemical and structural basis for the incorporation of 3-hydroxyasparagine at position 9 in the 11-residue acidic lipopeptide lactone calcium-dependent antibiotic (CDA). Direct hydroxylation of l-asparagine by AsnO, a non-heme Fe(2+)/alpha-ketoglutarate-dependent oxygenase encoded by the CDA biosynthesis gene cluster, was validated by Fmoc derivatization of the reaction product and LC/MS analysis. The 1.45, 1.92, and 1.66 A crystal structures of AsnO as apoprotein, Fe(2+) complex, and product complex, respectively, with (2S,3S)-3-hydroxyasparagine and succinate revealed the stereoselectivity and substrate specificity of AsnO. The comparison of native and product-complex structures of AsnO showed a lid-like region (residues F208-E223) that seals the active site upon substrate binding and shields it from sterically demanding peptide substrates. Accordingly, beta-hydroxylated asparagine is synthesized prior to its incorporation into the growing CDA peptide. The AsnO structure could serve as a template for engineering novel enzymes for the synthesis of beta-hydroxylated amino acids.

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