Literature DB >> 10813840

Factors determining the relative stability of anionic tetrahedral complexes in serine protease catalysis and inhibition.

M Shokhen1, A Albeck.   

Abstract

Quantum mechanical ab initio (RHF/6-31+G*//RHF/3-21G) calculations were used to simulate the formation of the tetrahedral complex intermediate (TC) in serine protease active site by substrates and transition-state analog inhibitors. The enzyme active site was simulated by an assembly of the amino acids participating in catalysis, whereas the substrates and inhibitors were simulated by small ligands, acetamide (1) and trifluoroacetone (2), respectively. For the first time, the principal factors determining the relative stability of the TC in serine proteases are arranged according to their energy contributions. These include (a) formation of the new covalent bond between Ser195 O(gamma) and the electrophilic center of a ligand; (b) stabilization of the oxyanion in the oxyanion hole; (c) basic catalysis by His57; and (d) hydrogen bond between Asp102 carboxylate and N(delta) of the protonated His57. We have directly calculated the gas-phase relative free energy of formation of TC(AS)(2) and TC(AS)(1), the value of DeltaDeltaG(g)[TC(AS)(2,1)]. It is DeltaE(cov), the relative energy of the new covalent bond between the enzyme and the ligand formed in a TC that determines the experimentally observed large difference in the stability of TCs formed by substrates and TS-analog inhibitors of serine proteases. We demonstrated that the relative stability of TCs formed by a series of mono- and dipeptide amides and TFKs, derived from experimental kinetic data, can be rather well approximated by the sum of the theoretically calculated value of DeltaDeltaG(g)[TC(AS)(2, 1)] and the difference in hydration free energies of isolated ligands. Copyright 2000 Wiley-Liss, Inc.

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Year:  2000        PMID: 10813840     DOI: 10.1002/(sici)1097-0134(20000701)40:1<154::aid-prot170>3.0.co;2-v

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


  2 in total

1.  Differentiating serine and cysteine protease mechanisms by new covalent QSAR descriptors.

Authors:  Michael Shokhen; Tamar Traube; Subramaniam Vijayakumar; Michal Hirsch; Neta Uritsky; Amnon Albeck
Journal:  Chembiochem       Date:  2011-03-24       Impact factor: 3.164

2.  Molecular basis of phospholipase A2 activity toward phospholipids with sn-1 substitutions.

Authors:  Lars Linderoth; Thomas L Andresen; Kent Jørgensen; Robert Madsen; Günther H Peters
Journal:  Biophys J       Date:  2007-09-07       Impact factor: 4.033

  2 in total

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