5VJP image
Deposition Date 2017-04-19
Release Date 2017-12-27
Last Version Date 2023-10-04
Entry Detail
PDB ID:
5VJP
Title:
Crystal Structure of Adenine Phosphoribosyltransferase from Saccharomyces cerevisiae Complexed with L-2,5-Dideoxy-2,5-Imino-Altritol 1,6-Bisphosphate (L-DIAB) and Adenine
Biological Source:
Source Organism:
Host Organism:
Method Details:
Experimental Method:
Resolution:
1.98 Å
R-Value Free:
0.28
R-Value Work:
0.26
R-Value Observed:
0.26
Space Group:
C 1 2 1
Macromolecular Entities
Structures with similar UniProt ID
Protein Blast
Polymer Type:polypeptide(L)
Molecule:Adenine phosphoribosyltransferase 1
Gene (Uniprot):APT1
Chain IDs:A, B
Chain Length:187
Number of Molecules:2
Biological Source:Saccharomyces cerevisiae
Primary Citation
Synthesis of bis-Phosphate Iminoaltritol Enantiomers and Structural Characterization with Adenine Phosphoribosyltransferase.
ACS Chem. Biol. 13 152 160 (2018)
PMID: 29178779 DOI: 10.1021/acschembio.7b00601

Abstact

Phosphoribosyl transferases (PRTs) are essential in nucleotide synthesis and salvage, amino acid, and vitamin synthesis. Transition state analysis of several PRTs has demonstrated ribocation-like transition states with a partial positive charge residing on the pentose ring. Core chemistry for synthesis of transition state analogues related to the 5-phospho-α-d-ribosyl 1-pyrophosphate (PRPP) reactant of these enzymes could be developed by stereospecific placement of bis-phosphate groups on an iminoaltritol ring. Cationic character is provided by the imino group and the bis-phosphates anchor both the 1- and 5-phosphate binding sites. We provide a facile synthetic path to these molecules. Cyclic-nitrone redox methodology was applied to the stereocontrolled synthesis of three stereoisomers of a selectively monoprotected diol relevant to the synthesis of transition-state analogue inhibitors. These polyhydroxylated pyrrolidine natural product analogues were bis-phosphorylated to generate analogues of the ribocationic form of 5-phosphoribosyl 1-phosphate. A safe, high yielding synthesis of the key intermediate represents a new route to these transition state mimics. An enantiomeric pair of iminoaltritol bis-phosphates (L-DIAB and D-DIAB) was prepared and shown to display inhibition of Plasmodium falciparum orotate phosphoribosyltransferase and Saccharomyces cerevisiae adenine phosphoribosyltransferase (ScAPRT). Crystallographic inhibitor binding analysis of L- and D-DIAB bound to the catalytic sites of ScAPRT demonstrates accommodation of both enantiomers by altered ring geometry and bis-phosphate catalytic site contacts.

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