Literature DB >> 12351825

Design of specific peptide inhibitors of phospholipase A2: structure of a complex formed between Russell's viper phospholipase A2 and a designed peptide Leu-Ala-Ile-Tyr-Ser (LAIYS).

Vikas Chandra1, Jayasankar Jasti, Punit Kaur, Sharmistha Dey, A Srinivasan, Ch Betzel, T P Singh.   

Abstract

Phospholipase A(2) (EC 3.1.1.4) is a key enzyme of the cascade mechanism involved in the production of proinflammatory compounds known as eicosanoids. The binding of phospholipase A(2) to membrane surfaces and the hydrolysis of phospholipids are thought to involve the formation of a hydrophobic channel into which a single substrate molecule diffuses before cleavage. In order to regulate the production of proinflammatory compounds, a specific peptide inhibitor of PLA(2), Leu-Ala-Ile-Tyr-Ser, has been designed. Phospholipase A(2) from Daboia russelli pulchella (DPLA(2)) and peptide Leu-Ala-Ile-Tyr-Ser (LAIYS) have been co-crystallized. The structure of the complex has been determined and refined to 2.0 A resolution. The structure contains two crystallographically independent molecules of DPLA(2), with one molecule of peptide specifically bound to one of them. The overall conformations of the two molecules are essentially similar except in three regions; namely, the calcium-binding loop including Trp31 (residues 25-34), the beta-wing consisting of two antiparallel beta-strands (residues 74-85) and the C-terminal region (residues 119-133). Of these, the most striking difference pertains to the orientation of Trp31 in the two molecules. The conformation of Trp31 in molecule A was suitable to allow the binding of peptide LAIYS, while that in molecule B prevented the entry of the ligand into the hydrophobic channel. The structure of the complex clearly showed that the OH group of Tyr of the inhibitor formed hydrogen bonds with both His48 N(delta1) and Asp49 O(delta1), while O(gamma)H of Ser was involved in a hydrogen bond with Trp31. Other peptide backbone atoms interact with protein through water molecules, while Leu, Ala and Ile form strong hydrophobic interactions with the residues of the hydrophobic channel.

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Year:  2002        PMID: 12351825     DOI: 10.1107/s0907444902013720

Source DB:  PubMed          Journal:  Acta Crystallogr D Biol Crystallogr        ISSN: 0907-4449


  5 in total

1.  Crystal structure of the complex formed between a group I phospholipase A2 and a naturally occurring fatty acid at 2.7 A resolution.

Authors:  Garima Singh; Jayasankar Jasti; K Saravanan; Sujata Sharma; Punit Kaur; A Srinivasan; Tej P Singh
Journal:  Protein Sci       Date:  2005-02       Impact factor: 6.725

2.  Structural and phylogenetic basis for the classification of group III phospholipase A2.

Authors:  Gururao Hariprasad; Alagiri Srinivasan; Reema Singh
Journal:  J Mol Model       Date:  2013-06-23       Impact factor: 1.810

3.  Chemical modification of ascorbic acid and evaluation of its lipophilic derivatives as inhibitors of secretory phospholipase A(2) with anti-inflammatory activity.

Authors:  Riyaz Mohamed; K K Dharmappa; Shaista Tarannum; N M Jameel; S A Kannum; H S Ashrafulla; Lokanath Rai; Cletus Jmd' Souza; M A Shekhar; Bannikuppe S Vishwanath
Journal:  Mol Cell Biochem       Date:  2010-08-22       Impact factor: 3.396

4.  In silico identification of viper phospholipaseA2 inhibitors: validation by in vitro, in vivo studies.

Authors:  Amit Nargotra; Sujata Sharma; Mohd Iqbal Alam; Zabeer Ahmed; Asha Bhagat; Subhash Chander Taneja; Ghulam Nabi Qazi; Surrinder Koul
Journal:  J Mol Model       Date:  2011-03-01       Impact factor: 1.810

Review 5.  Detect, correct, retract: How to manage incorrect structural models.

Authors:  Alexander Wlodawer; Zbigniew Dauter; Przemyslaw J Porebski; Wladek Minor; Robyn Stanfield; Mariusz Jaskolski; Edwin Pozharski; Christian X Weichenberger; Bernhard Rupp
Journal:  FEBS J       Date:  2017-11-27       Impact factor: 5.542

  5 in total

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