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Crystal structures capture three states in the catalytic cycle of a pyridoxal phosphate (PLP) synthase.
- Source :
-
The Journal of biological chemistry [J Biol Chem] 2015 Feb 27; Vol. 290 (9), pp. 5226-39. Date of Electronic Publication: 2015 Jan 07. - Publication Year :
- 2015
-
Abstract
- PLP synthase (PLPS) is a remarkable single-enzyme biosynthetic pathway that produces pyridoxal 5'-phosphate (PLP) from glutamine, ribose 5-phosphate, and glyceraldehyde 3-phosphate. The intact enzyme includes 12 synthase and 12 glutaminase subunits. PLP synthesis occurs in the synthase active site by a complicated mechanism involving at least two covalent intermediates at a catalytic lysine. The first intermediate forms with ribose 5-phosphate. The glutaminase subunit is a glutamine amidotransferase that hydrolyzes glutamine and channels ammonia to the synthase active site. Ammonia attack on the first covalent intermediate forms the second intermediate. Glyceraldehyde 3-phosphate reacts with the second intermediate to form PLP. To investigate the mechanism of the synthase subunit, crystal structures were obtained for three intermediate states of the Geobacillus stearothermophilus intact PLPS or its synthase subunit. The structures capture the synthase active site at three distinct steps in its complicated catalytic cycle, provide insights into the elusive mechanism, and illustrate the coordinated motions within the synthase subunit that separate the catalytic states. In the intact PLPS with a Michaelis-like intermediate in the glutaminase active site, the first covalent intermediate of the synthase is fully sequestered within the enzyme by the ordering of a generally disordered 20-residue C-terminal tail. Following addition of ammonia, the synthase active site opens and admits the Lys-149 side chain, which participates in formation of the second intermediate and PLP. Roles are identified for conserved Asp-24 in the formation of the first intermediate and for conserved Arg-147 in the conversion of the first to the second intermediate.<br /> (© 2015 by The American Society for Biochemistry and Molecular Biology, Inc.)
- Subjects :
- Ammonia chemistry
Ammonia metabolism
Aspartic Acid chemistry
Aspartic Acid metabolism
Bacterial Proteins genetics
Bacterial Proteins metabolism
Biocatalysis
Biosynthetic Pathways
Catalytic Domain
Crystallography, X-Ray
Geobacillus stearothermophilus genetics
Glutaminase genetics
Glutaminase metabolism
Glutamine chemistry
Glutamine metabolism
Glyceraldehyde 3-Phosphate chemistry
Glyceraldehyde 3-Phosphate metabolism
Kinetics
Lysine chemistry
Lysine metabolism
Models, Molecular
Molecular Structure
Mutation
Protein Conformation
Pyridoxal Phosphate metabolism
Ribosemonophosphates chemistry
Ribosemonophosphates metabolism
Spectrometry, Mass, Electrospray Ionization
Bacterial Proteins chemistry
Geobacillus stearothermophilus enzymology
Glutaminase chemistry
Pyridoxal Phosphate chemistry
Subjects
Details
- Language :
- English
- ISSN :
- 1083-351X
- Volume :
- 290
- Issue :
- 9
- Database :
- MEDLINE
- Journal :
- The Journal of biological chemistry
- Publication Type :
- Academic Journal
- Accession number :
- 25568319
- Full Text :
- https://doi.org/10.1074/jbc.M114.626382