Literature DB >> 15272156

The crystallographic structure of the aldose reductase-IDD552 complex shows direct proton donation from tyrosine 48.

Federico Ruiz1, Isabelle Hazemann, Andre Mitschler, Andrzejj Joachimiak, Thomas Schneider, Martin Karplus, Alberto Podjarny.   

Abstract

The X-ray crystal structure of human aldose reductase (ALR2) in complex with the inhibitor IDD552 was determined using crystals obtained from two crystallization conditions with different pH values (pH 5 and 8). In both structures the charged carboxylic head of the inhibitor binds to the active site, making hydrogen-bond interactions with His110 and Tyr48 and electrostatic interactions with NADP+. There is an important difference between the two structures: the observation of a double conformation of the carboxylic acid moiety of the inhibitor at pH 8, with one water molecule interacting with the main configuration. This is the first time that a water molecule has been observed deep inside the ALR2 active site. Furthermore, in the configuration with the lower occupancy factor the difference electron-density map shows a clear peak (2.5sigma) for the H atom in the hydrogen bond between the inhibitor's carboxylic acid and the Tyr48 side-chain O atom. The position of this peak implies that this H atom is shared between both O atoms, indicating possible direct proton transfer from this residue to the inhibitor. This fact agrees with the model of the catalytic mechanism, in which the proton is donated by the Tyr48 hydroxyl to the substrate. These observations are useful both in drug design and in understanding the ALR2 mechanism.

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Year:  2004        PMID: 15272156     DOI: 10.1107/S0907444904011370

Source DB:  PubMed          Journal:  Acta Crystallogr D Biol Crystallogr        ISSN: 0907-4449


  6 in total

1.  Structural and thermodynamic studies of simple aldose reductase-inhibitor complexes.

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3.  Path-integral method for predicting relative binding affinities of protein-ligand complexes.

Authors:  Chandrika Mulakala; Yiannis N Kaznessis
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4.  New Insights into the Catalytic Mechanism of Aldose Reductase: A QM/MM Study.

Authors:  Marie-Pierre Dréanic; Colin M Edge; Tell Tuttle
Journal:  ACS Omega       Date:  2017-09-14

5.  A combined computational strategy of sequence and structural analysis predicts the existence of a functional eicosanoid pathway in Drosophila melanogaster.

Authors:  Michael Scarpati; Yan Qi; Shubha Govind; Shaneen Singh
Journal:  PLoS One       Date:  2019-02-12       Impact factor: 3.240

6.  Which Properties Allow Ligands to Open and Bind to the Transient Binding Pocket of Human Aldose Reductase?

Authors:  Anna Sandner; Khang Ngo; Christoph P Sager; Frithjof Scheer; Michael Daude; Wibke E Diederich; Andreas Heine; Gerhard Klebe
Journal:  Biomolecules       Date:  2021-12-06
  6 in total

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