Literature DB >> 18951406

In silico analyses of substrate interactions with human serum paraoxonase 1.

Xin Hu1, Xiaohui Jiang, David E Lenz, Douglas M Cerasoli, Anders Wallqvist.   

Abstract

Human paraoxonase (HuPON1) is a serum enzyme that exhibits a broad spectrum of hydrolytic activities, including the hydrolysis of various organophosphates, esters, and recently identified lactone substrates. Despite intensive site-directed mutagenesis and other biological studies, the structural basis for the specificity of substrate interactions of HuPON1 remains elusive. In this study, we apply homology modeling, docking, and molecular dynamic (MD) simulations to probe the binding interactions of HuPON1 with representative substrates. The results suggest that the active site of HuPON1 is characterized by two distinct binding regions: the hydrophobic binding site for arylesters/lactones, and the paraoxon binding site for phosphotriesters. The unique binding modes proposed for each type of substrate reveal a number of key residues governing substrate specificity. The polymorphic residue R/Q192 interacts with the leaving group of paraoxon, suggesting it plays an important role in the proper positioning of this substrate in the active site. MD simulations of the optimal binding complexes show that residue Y71 undergoes an "open-closed" conformational change upon ligand binding, and forms strong interactions with substrates. Further binding free energy calculations and residual decomposition give a more refined molecular view of the energetics and origin of HuPON1/substrate interactions. These studies provide a theoretical model of substrate binding and specificity associated with wild type and mutant forms of HuPON1, which can be applied in the rational design of HuPON1 variants as bioscavengers with enhanced catalytic activity.

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Year:  2009        PMID: 18951406     DOI: 10.1002/prot.22264

Source DB:  PubMed          Journal:  Proteins        ISSN: 0887-3585


  16 in total

1.  Comparative modeling of PON2 and analysis of its substrate binding interactions using computational methods.

Authors:  Subramanian Barathi; Muralidaran Charanya; Shivashanmugam Muthukumaran; Narayanasamy Angayarkanni; Vetrivel Umashankar
Journal:  J Ocul Biol Dis Infor       Date:  2011-02-09

2.  Characterization of human paraoxonase 1 variants suggest that His residues at 115 and 134 positions are not always needed for the lactonase/arylesterase activities of the enzyme.

Authors:  Priyanka Bajaj; Rajan K Tripathy; Geetika Aggarwal; Abhay H Pande
Journal:  Protein Sci       Date:  2013-10-26       Impact factor: 6.725

3.  Computational characterization of how the VX nerve agent binds human serum paraoxonase 1.

Authors:  Steven Z Fairchild; Matthew W Peterson; Adel Hamza; Chang-Guo Zhan; Douglas M Cerasoli; Wenling E Chang
Journal:  J Mol Model       Date:  2010-04-09       Impact factor: 1.810

4.  Docking and molecular dynamics simulation studies on glycation-induced conformational changes of human paraoxonase 1.

Authors:  Ammara Saleem; S Sikander Azam; Shamshad Zarina
Journal:  Eur Biophys J       Date:  2011-12-23       Impact factor: 1.733

5.  Computational Modeling of Human Paraoxonase 1: Preparation of Protein Models, Binding Studies, and Mechanistic Insights.

Authors:  Toby T Sanan; Sivaramakrishnan Muthukrishnan; Jeremy M Beck; Peng Tao; Carrigan J Hayes; Tamara C Otto; Douglas M Cerasoli; David E Lenz; Christopher M Hadad
Journal:  J Phys Org Chem       Date:  2010-04-01       Impact factor: 2.391

6.  Dramatic differences in organophosphorus hydrolase activity between human and chimeric recombinant mammalian paraoxonase-1 enzymes.

Authors:  Tamara C Otto; Christina K Harsch; David T Yeung; Thomas J Magliery; Douglas M Cerasoli; David E Lenz
Journal:  Biochemistry       Date:  2009-11-03       Impact factor: 3.162

Review 7.  Catalytic mechanisms for phosphotriesterases.

Authors:  Andrew N Bigley; Frank M Raushel
Journal:  Biochim Biophys Acta       Date:  2012-04-26

8.  Mechanistic Insights into the Hydrolysis of Organophosphorus Compounds by Paraoxonase-1: Exploring the Limits of Substrate Tolerance in a Promiscuous Enzyme.

Authors:  Sivaramakrishnan Muthukrishnan; Vivekanand S Shete; Toby T Sanan; Shubham Vyas; Shameema Oottikkal; Lauren M Porter; Thomas J Magliery; Christopher M Hadad
Journal:  J Phys Org Chem       Date:  2012-12       Impact factor: 2.391

9.  VX hydrolysis by human serum paraoxonase 1: a comparison of experimental and computational results.

Authors:  Matthew W Peterson; Steven Z Fairchild; Tamara C Otto; Mojdeh Mohtashemi; Douglas M Cerasoli; Wenling E Chang
Journal:  PLoS One       Date:  2011-05-31       Impact factor: 3.240

10.  Catalytic bioscavengers against toxic esters, an alternative approach for prophylaxis and treatments of poisonings.

Authors:  Patrick Masson; Daniel Rochu
Journal:  Acta Naturae       Date:  2009-04       Impact factor: 1.845

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