Literature DB >> 12972411

Native and inhibited structure of a Mu class-related glutathione S-transferase from Plasmodium falciparum.

Markus Perbandt1, Cora Burmeister, Rolf D Walter, Christian Betzel, Eva Liebau.   

Abstract

The parasite Plasmodium falciparum causes malaria tropica, the most prevailing parasitic disease worldwide, with 300-500 million infections and 1.5-2.7 million deaths/year. The emergence of strains resistant to drugs used for prophylaxis and treatment and no vaccine available makes the structural analysis of potential drug targets essential. For that reason, we analyzed the three-dimensional structure of the glutathione S-transferase from P. falciparum (Pf-GST1) in the apoform and in complex with its inhibitor S-hexyl-glutathione. The structures have been analyzed to 2.6 and 2.2 A, respectively. Pf-GST1 shares several structural features with the Mu-type GSTs and is therefore closely related to this class, even though alignments with its members display low sequence identities in the range of 20-33%. Upon S-hexyl-glutathione binding, the overall structure and the glutathione-binding site (G-site) remain almost unchanged with the exception of the flexible C terminus. The detailed comparison of the parasitic enzyme with the human host Mu-class enzyme reveals that, although the overall structure is homologue, the shape of the hydrophobic binding pocket (H-site) differs substantially. In the human enzyme, it is shielded from one side by the large Mu-loop, whereas in Pf-GST1 the Mu-loop is truncated and the space to recognize and bind voluminous substrates is extended. This structural feature can be exploited to support the design of specific and parasite-selective inhibitors.

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Year:  2003        PMID: 12972411     DOI: 10.1074/jbc.M309663200

Source DB:  PubMed          Journal:  J Biol Chem        ISSN: 0021-9258            Impact factor:   5.157


  9 in total

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Authors:  Rumana Ahmad; Arvind K Srivastava
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Journal:  Biochimie       Date:  2017-01-17       Impact factor: 4.079

3.  Plasmodium falciparum glutathione S-transferase--structural and mechanistic studies on ligand binding and enzyme inhibition.

Authors:  Nicole Hiller; Karin Fritz-Wolf; Marcel Deponte; Wolfgang Wende; Herbert Zimmermann; Katja Becker
Journal:  Protein Sci       Date:  2005-12-29       Impact factor: 6.725

4.  Antimalarial drug targets in Plasmodium falciparum predicted by stage-specific metabolic network analysis.

Authors:  Carola Huthmacher; Andreas Hoppe; Sascha Bulik; Hermann-Georg Holzhütter
Journal:  BMC Syst Biol       Date:  2010-08-31

5.  Tetramerization and cooperativity in Plasmodium falciparum glutathione S-transferase are mediated by atypic loop 113-119.

Authors:  Eva Liebau; Kutayba F Dawood; Raffaele Fabrini; Lena Fischer-Riepe; Markus Perbandt; Lorenzo Stella; Jens Z Pedersen; Alessio Bocedi; Patrizia Petrarca; Giorgio Federici; Giorgio Ricci
Journal:  J Biol Chem       Date:  2009-06-16       Impact factor: 5.157

Review 6.  The Potential of Secondary Metabolites from Plants as Drugs or Leads against Protozoan Neglected Diseases-Part III: In-Silico Molecular Docking Investigations.

Authors:  Ifedayo Victor Ogungbe; William N Setzer
Journal:  Molecules       Date:  2016-10-19       Impact factor: 4.411

7.  Structure-Based Screening of Plasmodium berghei Glutathione S-Transferase Identifies CB-27 as a Novel Antiplasmodial Compound.

Authors:  Emilee E Colón-Lorenzo; Daisy D Colón-López; Joel Vega-Rodríguez; Alice Dupin; David A Fidock; Abel Baerga-Ortiz; José G Ortiz; Jürgen Bosch; Adelfa E Serrano
Journal:  Front Pharmacol       Date:  2020-03-17       Impact factor: 5.810

8.  WISDOM-II: screening against multiple targets implicated in malaria using computational grid infrastructures.

Authors:  Vinod Kasam; Jean Salzemann; Marli Botha; Ana Dacosta; Gianluca Degliesposti; Raul Isea; Doman Kim; Astrid Maass; Colin Kenyon; Giulio Rastelli; Martin Hofmann-Apitius; Vincent Breton
Journal:  Malar J       Date:  2009-05-01       Impact factor: 2.979

9.  Monomeric Camelus dromedarius GSTM1 at low pH is structurally more thermostable than its native dimeric form.

Authors:  Ajamaluddin Malik; Javed M Khan; Salman F Alamery; Dalia Fouad; Nikolaos E Labrou; Mohamed S Daoud; Mohamed O Abdelkader; Farid S Ataya
Journal:  PLoS One       Date:  2018-10-10       Impact factor: 3.240

  9 in total

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