Literature DB >> 27488271

Kinetic and computational analysis of the reversible inhibition of porcine pancreatic elastase: a structural and mechanistic approach.

Panagiota-Yiolanda Stergiou1, Athanasios Foukis1, Olga A Gkini1, Joseph G Bieth2, Emmanuel M Papamichael1.   

Abstract

Structural and mechanistic insights were revealed for the reversible inhibition of Porcine Pancreatic Elastase (PPE); the kinetics of uninhibited and inhibited hydrolysis of substrate Suc-AAA-pNA was analyzed thoroughly. Additionally, the interactions between PPE and its inhibitor were studied by computational techniques. The uninhibited hydrolysis of Suc-AAA-pNA by PPE proceeds through a virtual transition state, involving an inferior physical and another dominating chemical step, where two stabilized reactant states precede the predominant acyl-enzyme. Different kinds of bonding with the PPE-backbone residues, including those of the catalytic triad, were found during the MD simulation of 5 ns, as key interactions favoring a higher stabilization of the best ranked complex PPE-CF3C(O)-KA-NHPh-p-CF3. The proton inventories of the inhibited hydrolysis of Suc-AAA-pNA by PPE, were ruled out the existence of any virtual transition state and thus they argue for a different mode of catalysis involving a structurally disturbed PPE molecule. Thereafter, a novel inhibition mechanism was suggested.

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Keywords:  Inhibition mechanism; molecular docking; molecular dynamics; proton inventories

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Year:  2016        PMID: 27488271     DOI: 10.1080/14756366.2016.1210137

Source DB:  PubMed          Journal:  J Enzyme Inhib Med Chem        ISSN: 1475-6366            Impact factor:   5.051


  2 in total

1.  Inhibition of pancreatic elastase in silico and in vitro by Rubus rosifolius leaves extract and its constituents.

Authors:  Yesi Desmiaty; Esti Mulatsari; Fadlina Chany Saputri; Muhammad Hanafi; Rini Prastiwi; Berna Elya
Journal:  J Pharm Bioallied Sci       Date:  2020-07-18

2.  Molecular, biochemical and kinetic analysis of a novel, thermostable lipase (LipSm) from Stenotrophomonas maltophilia Psi-1, the first member of a new bacterial lipase family (XVIII).

Authors:  Maria Parapouli; Athanasios Foukis; Panagiota-Yiolanda Stergiou; Maria Koukouritaki; Panagiotis Magklaras; Olga A Gkini; Emmanuel M Papamichael; Amalia-Sofia Afendra; Efstathios Hatziloukas
Journal:  J Biol Res (Thessalon)       Date:  2018-02-08       Impact factor: 1.889

  2 in total

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