Literature DB >> 10213628

Multiple determinants influence complex formation of the hepatitis C virus NS3 protease domain with its NS4A cofactor peptide.

A Urbani1, G Biasiol, M Brunetti, C Volpari, S Di Marco, M Sollazzo, S Orrú, F D Piaz, A Casbarra, P Pucci, C Nardi, P Gallinari, R De Francesco, C Steinkühler.   

Abstract

The interaction of the hepatitis C virus (HCV) NS3 protease domain with its NS4A cofactor peptide (Pep4AK) was investigated at equilibrium and at pre-steady state under different physicochemical conditions. Equilibrium dissociation constants of the NS3-Pep4AK complex varied by several orders of magnitude depending on buffer additives. Glycerol, NaCl, detergents, and peptide substrates were found to stabilize this interaction. The extent of glycerol-induced stabilization varied in an HCV strain-dependent way with at least one determinant mapping to an NS3-NS4A interaction site. Conformational transitions affecting at least the first 18 amino acids of NS3 were the main energy barriers for both the association and the dissociation reactions of the complex. However, deletion of this N-terminal portion of the protease molecule only slightly influenced equilibrium dissociation constants determined under different physicochemical conditions. Limited proteolysis experiments coupled with mass spectrometric identification of cleavage fragments suggested a high degree of conformational flexibility affecting at least the first 21 residues of NS3. The accessibility of this region of the protease to limited chymotryptic digestion did not significantly change in any condition tested, whereas a significant reduction of chymotryptic cleavages within the NS3 core was detected under conditions of high NS3-Pep4AK complex affinity. We conclude the following: (1) The N-terminus of the NS3 protease that, according to the X-ray crystal structure, makes extensive contacts with the cofactor peptide is highly flexible in solution and contributes only marginally to the thermodynamic stability of the complex. (2) Affinity enhancement is accomplished by several factors through a general stabilization of the fold of the NS3 molecule.

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Year:  1999        PMID: 10213628     DOI: 10.1021/bi982773u

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


  7 in total

1.  The effect of prime-site occupancy on the hepatitis C virus NS3 protease structure.

Authors:  Annarita Casbarra; Fabrizio Dal Piaz; Paolo Ingallinella; Stefania Orrù; Piero Pucci; Antonello Pessi; Elisabetta Bianchi
Journal:  Protein Sci       Date:  2002-09       Impact factor: 6.725

2.  Topological investigation of amyloid fibrils obtained from beta2-microglobulin.

Authors:  Maria Monti; Serena Principe; Sofia Giorgetti; Palma Mangione; Gianpaolo Merlini; Anne Clark; Vittorio Bellotti; Angela Amoresano; Piero Pucci
Journal:  Protein Sci       Date:  2002-10       Impact factor: 6.725

3.  Characterization of the hepatitis C virus NS2/3 processing reaction by using a purified precursor protein.

Authors:  M Pallaoro; A Lahm; G Biasiol; M Brunetti; C Nardella; L Orsatti; F Bonelli; S Orrù; F Narjes; C Steinkühler
Journal:  J Virol       Date:  2001-10       Impact factor: 5.103

4.  Conformational analysis of HAMLET, the folding variant of human alpha-lactalbumin associated with apoptosis.

Authors:  Annarita Casbarra; Leila Birolo; Giuseppe Infusini; Fabrizio Dal Piaz; Malin Svensson; Piero Pucci; Catharina Svanborg; Gennaro Marino
Journal:  Protein Sci       Date:  2004-04-09       Impact factor: 6.725

5.  Genetic screen for monitoring hepatitis C virus NS3 serine protease activity.

Authors:  Miguel Angel Martinez; Bonaventura Clotet
Journal:  Antimicrob Agents Chemother       Date:  2003-05       Impact factor: 5.191

6.  Canine hepacivirus NS3 serine protease can cleave the human adaptor proteins MAVS and TRIF.

Authors:  Mariona Parera; Gloria Martrus; Sandra Franco; Bonaventura Clotet; Miguel Angel Martinez
Journal:  PLoS One       Date:  2012-08-01       Impact factor: 3.240

7.  Probing of exosites leads to novel inhibitor scaffolds of HCV NS3/4A proteinase.

Authors:  Sergey A Shiryaev; Anton V Cheltsov; Alex Y Strongin
Journal:  PLoS One       Date:  2012-07-02       Impact factor: 3.240

  7 in total

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