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Dive into the research topics where Gabriella Biasiol is active.

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Featured researches published by Gabriella Biasiol.


Journal of Virology | 2001

Characterization of the Hepatitis C Virus NS2/3 Processing Reaction by Using a Purified Precursor Protein

Michele Pallaoro; Armin Lahm; Gabriella Biasiol; Mirko Brunetti; Caterina Nardella; Laura Orsatti; Fabio Bonelli; Stefania Orrù; Frank Narjes; Christian Steinkühler

ABSTRACT The NS2-NS3 region of the hepatitis C virus polyprotein encodes a proteolytic activity that is required for processing of the NS2/3 junction. Membrane association of NS2 and the autocatalytic nature of the NS2/3 processing event have so far constituted hurdles to the detailed investigation of this reaction. We now report the first biochemical characterization of the self-processing activity of a purified NS2/3 precursor. Using multiple sequence alignments, we were able to define a minimal domain, devoid of membrane-anchoring sequences, which was still capable of performing the processing reaction. This truncated protein was efficiently expressed and processed in Escherichia coli. The processing reaction could be significantly suppressed by growth in minimal medium in the absence of added zinc ions, leading to the accumulation of an unprocessed precursor protein in inclusion bodies. This protein was purified to homogeneity, refolded, and shown to undergo processing at the authentic NS2/NS3 cleavage site with rates comparable to those observed using an in vitro-translated full-length NS2/3 precursor. Size-exclusion chromatography and a dependence of the processing rate on the concentration of truncated NS2/3 suggested a functional multimerization of the precursor protein. However, we were unable to observe trans cleavage activity between cleavage-site mutants and active-site mutants. Furthermore, the cleavage reaction of the wild-type protein was not inhibited by addition of a mutant that was unable to undergo self-processing. Site-directed mutagenesis data and the independence of the processing rate from the nature of the added metal ion argue in favor of NS2/3 being a cysteine protease having Cys993 and His952 as a catalytic dyad. We conclude that a purified protein can efficiently reproduce processing at the NS2/3 site in the absence of additional cofactors.


Biochemistry | 1998

Product inhibition of the hepatitis C virus NS3 protease.

Christian Steinkühler; Gabriella Biasiol; Mirko Brunetti; Andrea Urbani; Uwe Koch; Riccardo Cortese; and Antonello Pessi; Raffaele De Francesco


Journal of Virology | 2003

In Vitro Selection and Characterization of Hepatitis C Virus Serine Protease Variants Resistant to an Active-Site Peptide Inhibitor

Caterina Trozzi; Linda Bartholomew; Alessandra Ceccacci; Gabriella Biasiol; Laura Pacini; Sergio Altamura; Frank Narjes; Ester Muraglia; Giacomo Paonessa; Uwe Koch; Raffaele De Francesco; Christian Steinkühler; Giovanni Migliaccio


Journal of Virology | 1996

Activity of purified hepatitis C virus protease NS3 on peptide substrates.

Christian Steinkühler; A Urbani; L Tomei; Gabriella Biasiol; M Sardana; Elisabetta Bianchi; A Pessi; R. De Francesco


Protein Engineering | 1997

Affinity selection of a camelized V(H) domain antibody inhibitor of hepatitis C virus NS3 protease.

F Martin; Cinzia Volpari; Christian Steinkühler; N Dimasi; Mirko Brunetti; Gabriella Biasiol; Sergio Altamura; Riccardo Cortese; R. De Francesco; Maurizio Sollazzo


Biochemistry | 2000

α-Ketoacids Are Potent Slow Binding Inhibitors of the Hepatitis C Virus NS3 Protease

Frank Narjes; Mirko Brunetti; Stefania Colarusso; Benjamin Gerlach; Uwe Koch; Gabriella Biasiol; Daniela Fattori; Raffaele De Francesco; and Victor G. Matassa; Christian Steinkühler


Journal of Virology | 1997

Characterization of engineered hepatitis C virus NS3 protease inhibitors affinity selected from human pancreatic secretory trypsin inhibitor and minibody repertoires.

N Dimasi; F Martin; Cinzia Volpari; Mirko Brunetti; Gabriella Biasiol; Sergio Altamura; Riccardo Cortese; R De Francesco; Christian Steinkühler; Maurizio Sollazzo


Biochemistry | 2001

Role of charged residues in the catalytic mechanism of hepatitis C virus NS3 protease: electrostatic precollision guidance and transition-state stabilization.

Uwe Koch; Gabriella Biasiol; Mirko Brunetti; Daniela Fattori; Michele Pallaoro; Christian Steinkühler


Biochemistry | 1999

Conformational changes in human hepatitis C virus NS3 protease upon binding of product-based inhibitors

Elisabetta Bianchi; Stefania Orrù; Fabrizio Dal Piaz; Raffaele Ingenito; Annarita Casbarra; Gabriella Biasiol; Uwe Koch; Piero Pucci; Antonello Pessi


Biochemistry | 1999

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

Andrea Urbani; Gabriella Biasiol; Mirko Brunetti; Cinzia Volpari; Stefania Di Marco; Maurizio Sollazzo; Stefania Orrù; Fabrizio Dal Piaz; Annarita Casbarra; Piero Pucci; Chiara Nardi; Paola Gallinari; Raffaele De Francesco; Christian Steinkühler

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Annarita Casbarra

University of Naples Federico II

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Fabrizio Dal Piaz

University of Naples Federico II

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