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Hepatitis C virus NS4B carboxy terminal domain is a membrane binding domain

BACKGROUND: Hepatitis C virus (HCV) induces membrane rearrangements during replication. All HCV proteins are associated to membranes, pointing out the importance of membranes for HCV. Non structural protein 4B (NS4B) has been reported to induce cellular membrane alterations like the membranous web....

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Autores principales: Liefhebber, Jolanda MP, Brandt, Bernd W, Broer, Rene, Spaan, Willy JM, van Leeuwen, Hans C
Formato: Texto
Lenguaje:English
Publicado: BioMed Central 2009
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2698844/
https://www.ncbi.nlm.nih.gov/pubmed/19467155
http://dx.doi.org/10.1186/1743-422X-6-62
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author Liefhebber, Jolanda MP
Brandt, Bernd W
Broer, Rene
Spaan, Willy JM
van Leeuwen, Hans C
author_facet Liefhebber, Jolanda MP
Brandt, Bernd W
Broer, Rene
Spaan, Willy JM
van Leeuwen, Hans C
author_sort Liefhebber, Jolanda MP
collection PubMed
description BACKGROUND: Hepatitis C virus (HCV) induces membrane rearrangements during replication. All HCV proteins are associated to membranes, pointing out the importance of membranes for HCV. Non structural protein 4B (NS4B) has been reported to induce cellular membrane alterations like the membranous web. Four transmembrane segments in the middle of the protein anchor NS4B to membranes. An amphipatic helix at the amino-terminus attaches to membranes as well. The carboxy-terminal domain (CTD) of NS4B is highly conserved in Hepaciviruses, though its function remains unknown. RESULTS: A cytosolic localization is predicted for the NS4B-CTD. However, using membrane floatation assays and immunofluorescence, we now show targeting of the NS4B-CTD to membranes. Furthermore, a profile-profile search, with an HCV NS4B-CTD multiple sequence alignment, indicates sequence similarity to the membrane binding domain of prokaryotic D-lactate dehydrogenase (d-LDH). The crystal structure of E. coli d-LDH suggests that the region similar to NS4B-CTD is located in the membrane binding domain (MBD) of d-LDH, implying analogy in membrane association. Targeting of d-LDH to membranes occurs via electrostatic interactions of positive residues on the outside of the protein with negative head groups of lipids. To verify that anchorage of d-LDH MBD and NS4B-CTD is analogous, NS4B-CTD mutants were designed to disrupt these electrostatic interactions. Membrane association was confirmed by swopping the membrane contacting helix of d-LDH with the corresponding domain of the 4B-CTD. Furthermore, the functionality of these residues was tested in the HCV replicon system. CONCLUSION: Together these data show that NS4B-CTD is associated to membranes, similar to the prokaryotic d-LDH MBD, and is important for replication.
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spelling pubmed-26988442009-06-19 Hepatitis C virus NS4B carboxy terminal domain is a membrane binding domain Liefhebber, Jolanda MP Brandt, Bernd W Broer, Rene Spaan, Willy JM van Leeuwen, Hans C Virol J Research BACKGROUND: Hepatitis C virus (HCV) induces membrane rearrangements during replication. All HCV proteins are associated to membranes, pointing out the importance of membranes for HCV. Non structural protein 4B (NS4B) has been reported to induce cellular membrane alterations like the membranous web. Four transmembrane segments in the middle of the protein anchor NS4B to membranes. An amphipatic helix at the amino-terminus attaches to membranes as well. The carboxy-terminal domain (CTD) of NS4B is highly conserved in Hepaciviruses, though its function remains unknown. RESULTS: A cytosolic localization is predicted for the NS4B-CTD. However, using membrane floatation assays and immunofluorescence, we now show targeting of the NS4B-CTD to membranes. Furthermore, a profile-profile search, with an HCV NS4B-CTD multiple sequence alignment, indicates sequence similarity to the membrane binding domain of prokaryotic D-lactate dehydrogenase (d-LDH). The crystal structure of E. coli d-LDH suggests that the region similar to NS4B-CTD is located in the membrane binding domain (MBD) of d-LDH, implying analogy in membrane association. Targeting of d-LDH to membranes occurs via electrostatic interactions of positive residues on the outside of the protein with negative head groups of lipids. To verify that anchorage of d-LDH MBD and NS4B-CTD is analogous, NS4B-CTD mutants were designed to disrupt these electrostatic interactions. Membrane association was confirmed by swopping the membrane contacting helix of d-LDH with the corresponding domain of the 4B-CTD. Furthermore, the functionality of these residues was tested in the HCV replicon system. CONCLUSION: Together these data show that NS4B-CTD is associated to membranes, similar to the prokaryotic d-LDH MBD, and is important for replication. BioMed Central 2009-05-25 /pmc/articles/PMC2698844/ /pubmed/19467155 http://dx.doi.org/10.1186/1743-422X-6-62 Text en Copyright © 2009 Liefhebber et al; licensee BioMed Central Ltd. http://creativecommons.org/licenses/by/2.0 This is an Open Access article distributed under the terms of the Creative Commons Attribution License ( (http://creativecommons.org/licenses/by/2.0) ), which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research
Liefhebber, Jolanda MP
Brandt, Bernd W
Broer, Rene
Spaan, Willy JM
van Leeuwen, Hans C
Hepatitis C virus NS4B carboxy terminal domain is a membrane binding domain
title Hepatitis C virus NS4B carboxy terminal domain is a membrane binding domain
title_full Hepatitis C virus NS4B carboxy terminal domain is a membrane binding domain
title_fullStr Hepatitis C virus NS4B carboxy terminal domain is a membrane binding domain
title_full_unstemmed Hepatitis C virus NS4B carboxy terminal domain is a membrane binding domain
title_short Hepatitis C virus NS4B carboxy terminal domain is a membrane binding domain
title_sort hepatitis c virus ns4b carboxy terminal domain is a membrane binding domain
topic Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2698844/
https://www.ncbi.nlm.nih.gov/pubmed/19467155
http://dx.doi.org/10.1186/1743-422X-6-62
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