Literature DB >> 18366187

The electrostatic driving force for nucleophilic catalysis in L-arginine deiminase: a combined experimental and theoretical study.

Ling Li1, Zhimin Li, Canhui Wang, Dingguo Xu, Patrick S Mariano, Hua Guo, Debra Dunaway-Mariano.   

Abstract

L-arginine deiminase (ADI) catalyzes the hydrolysis of L-arginine to form L-citrulline and ammonia via two partial reactions. A working model of the ADI catalytic mechanism assumes nucleophilic catalysis by a stringently conserved active site Cys and general acid-general base catalysis by a stringently conserved active site His. Accordingly, in the first partial reaction, the Cys attacks the substrate guanidino C zeta atom to form a tetrahedral covalent adduct, which is protonated by the His at the departing ammonia group to facilitate the formation of the Cys- S-alkylthiouronium intermediate. In the second partial reaction, the His activates a water molecule for nucleophilic addition at the thiouronium C zeta atom to form the second tetrahedral intermediate, which eliminates the Cys in formation of the L-citrulline product. The absence of a basic residue near the Cys thiol suggested that the electrostatic environment of the Cys thiol, in the enzyme-substrate complex, stabilizes the Cys thiolate anion. The studies described in this paper explore the mechanism of stabilization of the Cys thiolate. First, the log(k(cat)/K(m)) and log k(cat) pH rate profiles were measured for several structurally divergent ADIs to establish the pH range for ADI catalysis. All ADIs were optimally active at pH 5, which suggested that the Cys pKa is strongly perturbed by the prevailing electrostatics of the ADI active site. The p K a of the Bacillus cereus ADI (BcADI) was determined by UV-pH titration to be 9.6. In contrast, the pKa determined by iodoacetamide Cys alkylation is 6.9. These results suggest that the negative electrostatic field from the two opposing Asp carboxylates perturbs the Cys pKa upward in the apoenzyme and that the binding of the iodoacetamide (a truncated analogue of the citrulline product) between the Cys thiol and the two Asp carboxylates shields the Cys thiol, thereby reducing its pKa. It is hypothesized that the bound positively charged guanidinium group of the L-arginine substrate further stabilizes the Cys thiolate. The so-called "substrate-assisted" Cys ionization, first reported by Fast and co-workers to operate in the related enzyme dimethylarginine dimethylaminohydrolase [Stone, E. M., Costello, A. L., Tierney, D. L., and Fast, W. (2006) Biochemistry 45, 5618-5630], was further explored computationally in ADI by using an ab initio quantum mechanics/molecular mechanics method. The energy profiles for formation of the tetrahedral intermediate in the first partial reaction were calculated for three different reaction scenarios. From these results, we conclude that catalytic turnover commences from the active configuration of the ADI(L-arginine) complex which consists of the Cys thiolate (nucleophile) and His imidazolium ion (general acid) and that the energy barriers for the nucleophilic addition of Cys thiolate to the thiouronium C zeta atom and His imidazolium ion-assisted elimination from the tetrahedral intermediate are small.

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Year:  2008        PMID: 18366187     DOI: 10.1021/bi7023496

Source DB:  PubMed          Journal:  Biochemistry        ISSN: 0006-2960            Impact factor:   3.162


  6 in total

Review 1.  The Taxonomy of Covalent Inhibitors.

Authors:  Alfred Tuley; Walter Fast
Journal:  Biochemistry       Date:  2018-04-30       Impact factor: 3.162

2.  Born-Oppenheimer ab initio QM/MM molecular dynamics simulations of the hydrolysis reaction catalyzed by protein arginine deiminase 4.

Authors:  Zhihong Ke; Shenglong Wang; Daiqian Xie; Yingkai Zhang
Journal:  J Phys Chem B       Date:  2009-12-31       Impact factor: 2.991

Review 3.  Mechanistic similarity and diversity among the guanidine-modifying members of the pentein superfamily.

Authors:  Thomas Linsky; Walter Fast
Journal:  Biochim Biophys Acta       Date:  2010-07-21

4.  Ab initio QM/MM free-energy studies of arginine deiminase catalysis: the protonation state of the Cys nucleophile.

Authors:  Zhihong Ke; Hua Guo; Daiqian Xie; Shenglong Wang; Yingkai Zhang
Journal:  J Phys Chem B       Date:  2011-03-11       Impact factor: 2.991

5.  Mechanisms of catalysis and inhibition operative in the arginine deiminase from the human pathogen Giardia lamblia.

Authors:  Zhimin Li; Liudmila Kulakova; Ling Li; Andrey Galkin; Zhiming Zhao; Theodore E Nash; Patrick S Mariano; Osnat Herzberg; Debra Dunaway-Mariano
Journal:  Bioorg Chem       Date:  2009-06-13       Impact factor: 5.275

6.  Active site cysteine is protonated in the PAD4 Michaelis complex: evidence from Born-Oppenheimer ab initio QM/MM molecular dynamics simulations.

Authors:  Zhihong Ke; Yanzi Zhou; Po Hu; Shenglong Wang; Daiqian Xie; Yingkai Zhang
Journal:  J Phys Chem B       Date:  2009-09-24       Impact factor: 2.991

  6 in total

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