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A Conserved NS3 Surface Patch Orchestrates NS2 Protease Stimulation, NS5A Hyperphosphorylation and HCV Genome Replication

Hepatitis C virus (HCV) infection is a leading cause of liver disease worldwide. The HCV RNA genome is translated into a single polyprotein. Most of the cleavage sites in the non-structural (NS) polyprotein region are processed by the NS3/NS4A serine protease. The vital NS2-NS3 cleavage is catalyzed...

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Autores principales: Isken, Olaf, Langerwisch, Ulrike, Jirasko, Vlastimil, Rehders, Dirk, Redecke, Lars, Ramanathan, Harish, Lindenbach, Brett D., Bartenschlager, Ralf, Tautz, Norbert
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4361677/
https://www.ncbi.nlm.nih.gov/pubmed/25774920
http://dx.doi.org/10.1371/journal.ppat.1004736
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author Isken, Olaf
Langerwisch, Ulrike
Jirasko, Vlastimil
Rehders, Dirk
Redecke, Lars
Ramanathan, Harish
Lindenbach, Brett D.
Bartenschlager, Ralf
Tautz, Norbert
author_facet Isken, Olaf
Langerwisch, Ulrike
Jirasko, Vlastimil
Rehders, Dirk
Redecke, Lars
Ramanathan, Harish
Lindenbach, Brett D.
Bartenschlager, Ralf
Tautz, Norbert
author_sort Isken, Olaf
collection PubMed
description Hepatitis C virus (HCV) infection is a leading cause of liver disease worldwide. The HCV RNA genome is translated into a single polyprotein. Most of the cleavage sites in the non-structural (NS) polyprotein region are processed by the NS3/NS4A serine protease. The vital NS2-NS3 cleavage is catalyzed by the NS2 autoprotease. For efficient processing at the NS2/NS3 site, the NS2 cysteine protease depends on the NS3 serine protease domain. Despite its importance for the viral life cycle, the molecular details of the NS2 autoprotease activation by NS3 are poorly understood. Here, we report the identification of a conserved hydrophobic NS3 surface patch that is essential for NS2 protease activation. One residue within this surface region is also critical for RNA replication and NS5A hyperphosphorylation, two processes known to depend on functional replicase assembly. This dual function of the NS3 surface patch prompted us to reinvestigate the impact of the NS2-NS3 cleavage on NS5A hyperphosphorylation. Interestingly, NS2-NS3 cleavage turned out to be a prerequisite for NS5A hyperphosphorylation, indicating that this cleavage has to occur prior to replicase assembly. Based on our data, we propose a sequential cascade of molecular events: in uncleaved NS2-NS3, the hydrophobic NS3 surface patch promotes NS2 protease stimulation; upon NS2-NS3 cleavage, this surface region becomes available for functional replicase assembly. This model explains why efficient NS2-3 cleavage is pivotal for HCV RNA replication. According to our model, the hydrophobic surface patch on NS3 represents a module critically involved in the temporal coordination of HCV replicase assembly.
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spelling pubmed-43616772015-03-23 A Conserved NS3 Surface Patch Orchestrates NS2 Protease Stimulation, NS5A Hyperphosphorylation and HCV Genome Replication Isken, Olaf Langerwisch, Ulrike Jirasko, Vlastimil Rehders, Dirk Redecke, Lars Ramanathan, Harish Lindenbach, Brett D. Bartenschlager, Ralf Tautz, Norbert PLoS Pathog Research Article Hepatitis C virus (HCV) infection is a leading cause of liver disease worldwide. The HCV RNA genome is translated into a single polyprotein. Most of the cleavage sites in the non-structural (NS) polyprotein region are processed by the NS3/NS4A serine protease. The vital NS2-NS3 cleavage is catalyzed by the NS2 autoprotease. For efficient processing at the NS2/NS3 site, the NS2 cysteine protease depends on the NS3 serine protease domain. Despite its importance for the viral life cycle, the molecular details of the NS2 autoprotease activation by NS3 are poorly understood. Here, we report the identification of a conserved hydrophobic NS3 surface patch that is essential for NS2 protease activation. One residue within this surface region is also critical for RNA replication and NS5A hyperphosphorylation, two processes known to depend on functional replicase assembly. This dual function of the NS3 surface patch prompted us to reinvestigate the impact of the NS2-NS3 cleavage on NS5A hyperphosphorylation. Interestingly, NS2-NS3 cleavage turned out to be a prerequisite for NS5A hyperphosphorylation, indicating that this cleavage has to occur prior to replicase assembly. Based on our data, we propose a sequential cascade of molecular events: in uncleaved NS2-NS3, the hydrophobic NS3 surface patch promotes NS2 protease stimulation; upon NS2-NS3 cleavage, this surface region becomes available for functional replicase assembly. This model explains why efficient NS2-3 cleavage is pivotal for HCV RNA replication. According to our model, the hydrophobic surface patch on NS3 represents a module critically involved in the temporal coordination of HCV replicase assembly. Public Library of Science 2015-03-16 /pmc/articles/PMC4361677/ /pubmed/25774920 http://dx.doi.org/10.1371/journal.ppat.1004736 Text en © 2015 Isken et al http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Isken, Olaf
Langerwisch, Ulrike
Jirasko, Vlastimil
Rehders, Dirk
Redecke, Lars
Ramanathan, Harish
Lindenbach, Brett D.
Bartenschlager, Ralf
Tautz, Norbert
A Conserved NS3 Surface Patch Orchestrates NS2 Protease Stimulation, NS5A Hyperphosphorylation and HCV Genome Replication
title A Conserved NS3 Surface Patch Orchestrates NS2 Protease Stimulation, NS5A Hyperphosphorylation and HCV Genome Replication
title_full A Conserved NS3 Surface Patch Orchestrates NS2 Protease Stimulation, NS5A Hyperphosphorylation and HCV Genome Replication
title_fullStr A Conserved NS3 Surface Patch Orchestrates NS2 Protease Stimulation, NS5A Hyperphosphorylation and HCV Genome Replication
title_full_unstemmed A Conserved NS3 Surface Patch Orchestrates NS2 Protease Stimulation, NS5A Hyperphosphorylation and HCV Genome Replication
title_short A Conserved NS3 Surface Patch Orchestrates NS2 Protease Stimulation, NS5A Hyperphosphorylation and HCV Genome Replication
title_sort conserved ns3 surface patch orchestrates ns2 protease stimulation, ns5a hyperphosphorylation and hcv genome replication
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4361677/
https://www.ncbi.nlm.nih.gov/pubmed/25774920
http://dx.doi.org/10.1371/journal.ppat.1004736
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