1HJL image
Deposition Date 2003-02-27
Release Date 2003-05-09
Last Version Date 2023-12-13
Entry Detail
PDB ID:
1HJL
Title:
Biochemical and Structural Analysis of the Molybdenum Cofactor Biosynthesis protein MobA
Biological Source:
Source Organism:
ESCHERICHIA COLI (Taxon ID: 562)
Host Organism:
Method Details:
Experimental Method:
Resolution:
2.00 Å
R-Value Free:
0.22
R-Value Work:
0.17
Space Group:
P 21 21 2
Macromolecular Entities
Polymer Type:polypeptide(L)
Molecule:MOLYBDOPTERIN-GUANINE DINUCLEOTIDE BIOSYNTHESIS PROTEIN A
Gene (Uniprot):mobA
Mutations:YES
Chain IDs:A
Chain Length:201
Number of Molecules:1
Biological Source:ESCHERICHIA COLI
Primary Citation
Biochemical and Structural Analysis of the Molybdenum Cofactor Biosynthesis Protein Moba
J.Biol.Chem. 278 25302 ? (2003)
PMID: 12719427 DOI: 10.1074/JBC.M302639200

Abstact

Molybdopterin guanine dinucleotide (MGD) is the form of the molybdenum cofactor that is required for the activity of most bacterial molybdoenzymes. MGD is synthesized from molybdopterin (MPT) and GTP in a reaction catalyzed by the MobA protein. Here we report that wild type MobA can be copurified along with bound MPT and MGD, demonstrating a tight binding of both its substrate and product. To study structure-function relationships, we have constructed a number of site-specific mutations of the most highly conserved amino acid residues of the MobA protein family. Variant MobA proteins were characterized for their ability to support the synthesis of active molybdenum enzymes, to bind MPT and MGD, to interact with the molybdenum cofactor biosynthesis proteins MobB and MoeA. They were also characterized by x-ray structural analysis. Our results suggest an essential role for glycine 15 of MobA, either for GTP binding and/or catalysis, and an involvement of glycine 82 in the stabilization of the product-bound form of the enzyme. Surprisingly, the individual and double substitution of asparagines 180 and 182 to aspartate did not affect MPT binding, catalysis, and product stabilization.

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