Loading
PDBj
MenuPDBj@FacebookPDBj@X(formerly Twitter)PDBj@BlueSkyPDBj@YouTubewwPDB FoundationwwPDBDonate
RCSB PDBPDBeBMRBAdv. SearchSearch help

2WF7

Structure of Beta-Phosphoglucomutase inhibited with Glucose-6- phosphonate and Aluminium tetrafluoride

Summary for 2WF7
Entry DOI10.2210/pdb2wf7/pdb
Related1LVH 1O03 1O08 1Z4N 1Z4O 1ZOL 2WF5 2WF6 2WF8 2WF9 2WFA 4C4R
DescriptorBETA-PHOSPHOGLUCOMUTASE, TETRAFLUOROALUMINATE ION, MAGNESIUM ION, ... (5 entities in total)
Functional Keywordstransition state analogue, haloacid dehalogenase superfamily, isomerase, phosphotransferase
Biological sourceLACTOCOCCUS LACTIS
Cellular locationCytoplasm (Potential): P71447
Total number of polymer chains1
Total formula weight24649.34
Authors
Bowler, M.W.,Baxter, N.J.,Webster, C.E.,Pollard, S.,Alizadeh, T.,Hounslow, A.M.,Cliff, M.J.,Bermel, W.,Williams, N.H.,Hollfelder, F.,Blackburn, G.M.,Waltho, J.P. (deposition date: 2009-04-03, release date: 2010-05-19, Last modification date: 2024-05-08)
Primary citationJin, Y.,Bhattasali, D.,Pellegrini, E.,Forget, S.M.,Baxter, N.J.,Cliff, M.J.,Bowler, M.W.,Jakeman, D.L.,Blackburn, G.M.,Waltho, J.P.
Alpha-Fluorophosphonates Reveal How a Phosphomutase Conserves Transition State Conformation Over Hexose Recognition in its Two-Step Reaction.
Proc.Natl.Acad.Sci.USA, 111:12384-, 2014
Cited by
PubMed Abstract: β-Phosphoglucomutase (βPGM) catalyzes isomerization of β-D-glucose 1-phosphate (βG1P) into D-glucose 6-phosphate (G6P) via sequential phosphoryl transfer steps using a β-D-glucose 1,6-bisphosphate (βG16BP) intermediate. Synthetic fluoromethylenephosphonate and methylenephosphonate analogs of βG1P deliver novel step 1 transition state analog (TSA) complexes for βPGM, incorporating trifluoromagnesate and tetrafluoroaluminate surrogates of the phosphoryl group. Within an invariant protein conformation, the β-D-glucopyranose ring in the βG1P TSA complexes (step 1) is flipped over and shifted relative to the G6P TSA complexes (step 2). Its equatorial hydroxyl groups are hydrogen-bonded directly to the enzyme rather than indirectly via water molecules as in step 2. The (C)O-P bond orientation for binding the phosphate in the inert phosphate site differs by ∼ 30° between steps 1 and 2. By contrast, the orientations for the axial O-Mg-O alignment for the TSA of the phosphoryl group in the catalytic site differ by only ∼ 5°, and the atoms representing the five phosphorus-bonded oxygens in the two transition states (TSs) are virtually superimposable. The conformation of βG16BP in step 1 does not fit into the same invariant active site for step 2 by simple positional interchange of the phosphates: the TS alignment is achieved by conformational change of the hexose rather than the protein.
PubMed: 25104750
DOI: 10.1073/PNAS.1402850111
PDB entries with the same primary citation
Experimental method
X-RAY DIFFRACTION (1.05 Å)
Structure validation

246704

PDB entries from 2025-12-24

PDB statisticsPDBj update infoContact PDBjnumon