6F77 image
Entry Detail
PDB ID:
6F77
Keywords:
Title:
Crystal structure of the prephenate aminotransferase from Rhizobium meliloti
Biological Source:
Host Organism:
PDB Version:
Deposition Date:
2017-12-07
Release Date:
2019-03-13
Method Details:
Experimental Method:
Resolution:
1.79 Å
R-Value Free:
0.20
R-Value Work:
0.17
R-Value Observed:
0.17
Space Group:
P 1 21 1
Macromolecular Entities
Polymer Type:polypeptide(L)
Description:Aspartate aminotransferase A
Chain IDs:A, C, D, E, F
Chain Length:400
Number of Molecules:5
Biological Source:Rhizobium meliloti (strain 1021)
Polymer Type:polypeptide(L)
Description:Aspartate aminotransferase A
Chain IDs:B
Chain Length:400
Number of Molecules:1
Biological Source:Rhizobium meliloti (strain 1021)
Modified Residue
Compound ID Chain ID Parent Comp ID Details 2D Image
LLP B LYS modified residue
Ligand Molecules
Primary Citation
Tyrosine metabolism: identification of a key residue in the acquisition of prephenate aminotransferase activity by 1 beta aspartate aminotransferase.
Febs J. 286 2118 2134 (2019)
PMID: 30771275 DOI: 10.1111/febs.14789

Abstact

Alternative routes for the post-chorismate branch of the biosynthetic pathway leading to tyrosine exist, the 4-hydroxyphenylpyruvate or the arogenate route. The arogenate route involves the transamination of prephenate into arogenate. In a previous study, we found that, depending on the microorganisms possessing the arogenate route, three different aminotransferases evolved to perform prephenate transamination, that is, 1β aspartate aminotransferase (1β AAT), N-succinyl-l,l-diaminopimelate aminotransferase, and branched-chain aminotransferase. The present work aimed at identifying molecular determinant(s) of 1β AAT prephenate aminotransferase (PAT) activity. To that purpose, we conducted X-ray crystal structure analysis of two PAT competent 1β AAT from Arabidopsis thaliana and Rhizobium meliloti and one PAT incompetent 1β AAT from R. meliloti. This structural analysis supported by site-directed mutagenesis, modeling, and molecular dynamics simulations allowed us to identify a molecular determinant of PAT activity in the flexible N-terminal loop of 1β AAT. Our data reveal that a Lys/Arg/Gln residue in position 12 in the sequence (numbering according to Thermus thermophilus 1β AAT), present only in PAT competent enzymes, could interact with the 4-hydroxyl group of the prephenate substrate, and thus may have a central role in the acquisition of PAT activity by 1β AAT.

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