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A Biologically-validated HCV E1E2 Heterodimer Structural Model.
Castelli, Matteo; Clementi, Nicola; Pfaff, Jennifer; Sautto, Giuseppe A; Diotti, Roberta A; Burioni, Roberto; Doranz, Benjamin J; Dal Peraro, Matteo; Clementi, Massimo; Mancini, Nicasio.
Affiliation
  • Castelli M; Laboratory of Microbiology and Virology, Università "Vita-Salute" San Raffaele, Via Olgettina 58, 20132, Milano, Italy.
  • Clementi N; Laboratory of Microbiology and Virology, Università "Vita-Salute" San Raffaele, Via Olgettina 58, 20132, Milano, Italy.
  • Pfaff J; Integral Molecular, 3711 Market St #900, Philadelphia, PA, 19104, USA.
  • Sautto GA; Laboratory of Microbiology and Virology, Università "Vita-Salute" San Raffaele, Via Olgettina 58, 20132, Milano, Italy.
  • Diotti RA; Laboratory of Microbiology and Virology, Università "Vita-Salute" San Raffaele, Via Olgettina 58, 20132, Milano, Italy.
  • Burioni R; Laboratory of Microbiology and Virology, Università "Vita-Salute" San Raffaele, Via Olgettina 58, 20132, Milano, Italy.
  • Doranz BJ; Integral Molecular, 3711 Market St #900, Philadelphia, PA, 19104, USA.
  • Dal Peraro M; Laboratory for Biomolecular Modeling, Institute of Bioengineering, School of Life Sciences, Ecole Polytechnique Fédérale de Lausanne, Route Cantonale, 1015, Lausanne, Switzerland.
  • Clementi M; Swiss Institute of Bioinformatics, Lausanne, Switzerland.
  • Mancini N; Laboratory of Microbiology and Virology, Università "Vita-Salute" San Raffaele, Via Olgettina 58, 20132, Milano, Italy.
Sci Rep ; 7(1): 214, 2017 03 16.
Article in En | MEDLINE | ID: mdl-28303031
The design of vaccine strategies and the development of drugs targeting the early stages of Hepatitis C virus (HCV) infection are hampered by the lack of structural information about its surface glycoproteins E1 and E2, the two constituents of HCV entry machinery. Despite the recent crystal resolution of limited versions of both proteins in truncated form, a complete picture of the E1E2 complex is still missing. Here we combined deep computational analysis of E1E2 secondary, tertiary and quaternary structure with functional and immunological mutational analysis across E1E2 in order to propose an in silico model for the ectodomain of the E1E2 heterodimer. Our model describes E1-E2 ectodomain dimerization interfaces, provides a structural explanation of E1 and E2 immunogenicity and sheds light on the molecular processes and disulfide bridges isomerization underlying the conformational changes required for fusion. Comprehensive alanine mutational analysis across 553 residues of E1E2 also resulted in identifying the epitope maps of diverse mAbs and the disulfide connectivity underlying E1E2 native conformation. The predicted structure unveils E1 and E2 structures in complex, thus representing a step towards the rational design of immunogens and drugs inhibiting HCV entry.
Subject(s)

Full text: 1 Collection: 01-internacional Database: MEDLINE Main subject: Viral Envelope Proteins / Hepacivirus Type of study: Prognostic_studies Language: En Journal: Sci Rep Year: 2017 Document type: Article Affiliation country: Italy Country of publication: United kingdom

Full text: 1 Collection: 01-internacional Database: MEDLINE Main subject: Viral Envelope Proteins / Hepacivirus Type of study: Prognostic_studies Language: En Journal: Sci Rep Year: 2017 Document type: Article Affiliation country: Italy Country of publication: United kingdom