A Multidomain Fusion Protein in Listeria monocytogenes Catalyzes the Two Primary Activities for Glutathione Biosynthesis

Author:

Gopal Shubha1,Borovok Ilya2,Ofer Amos2,Yanku Michaela2,Cohen Gerald2,Goebel Werner1,Kreft Jürgen1,Aharonowitz Yair2

Affiliation:

1. Theodor-Boveri-Institut (Biozentrum) der Universitat Würzburg, Lehrstuhl für Mikrobiologie, Am Hubland, 97074 Würzburg, Germany

2. Tel Aviv University, The George S. Wise Faculty of Life Sciences, Department of Molecular Microbiology and Biotechnology, Ramat Aviv, 69978, Tel Aviv, Israel

Abstract

ABSTRACT Glutathione is the predominant low-molecular-weight peptide thiol present in living organisms and plays a key role in protecting cells against oxygen toxicity. Until now, glutathione synthesis was thought to occur solely through the consecutive action of two physically separate enzymes, γ-glutamylcysteine ligase and glutathione synthetase. In this report we demonstrate that Listeria monocytogenes contains a novel multidomain protein (termed GshF) that carries out complete synthesis of glutathione. Evidence for this comes from experiments which showed that in vitro recombinant GshF directs the formation of glutathione from its constituent amino acids and the in vivo effect of a mutation in GshF that abolishes glutathione synthesis, results in accumulation of the intermediate γ-glutamylcysteine, and causes hypersensitivity to oxidative agents. We identified GshF orthologs, consisting of a γ-glutamylcysteine ligase (GshA) domain fused to an ATP-grasp domain, in 20 gram-positive and gram-negative bacteria. Remarkably, 95% of these bacteria are mammalian pathogens. A plausible origin for GshF-dependent glutathione biosynthesis in these bacteria was the recruitment by a GshA ancestor gene of an ATP-grasp gene and the subsequent spread of the fusion gene between mammalian hosts, most likely by horizontal gene transfer.

Publisher

American Society for Microbiology

Subject

Molecular Biology,Microbiology

Reference42 articles.

1. Abbott, J. J., J. Pei, J. L. Ford, Y. Qi, V. N. Grishin, L. A. Pitcher, M. A. Phillips, and N. V. Grishin. 2001. Structure prediction and active site analysis of the metal binding determinants in gamma-glutamylcysteine synthetase. J. Biol. Chem.276:42099-42107.

2. Aharonowitz, Y., J. Bergmeyer, J. M. Cantoral, G. Cohen, A. L. Demain, U. Fink, J. Kinghorn, H. Kleinkauf, A. MacCabe, H. Palissa, and et al. 1993. Delta-(l-alpha-aminoadipyl)-l-cysteinyl-d-valine synthetase, the multienzyme integrating the four primary reactions in beta-lactam biosynthesis, as a model peptide synthetase. Bio/Technology11:807-810.

3. Gapped BLAST and PSI-BLAST: a new generation of protein database search programs

4. High-efficiency gene inactivation and replacement system for gram-positive bacteria

5. Bubert, A., Z. Sokolovic, S. K. Chun, L. Papatheodorou, A. Simm, and W. Goebel. 1999. Differential expression of Listeria monocytogenes virulence genes in mammalian host cells. Mol. Gen. Genet.261:323-336.

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