Hepatitis C virus NS4B targets lipid droplets through hydrophobic residues in the amphipathic helices[S]

Lipid droplets (LD) are dynamic storage organelles that are involved in lipid homeostasis. Hepatitis C virus (HCV) is closely associated with LDs. HCV Core and nonstructural (NS) proteins colocalize with LDs and presumably are involved in virion formation at that site. We demonstrated that HCV NS4B,...

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Main Authors: Torahiko Tanaka, Kazumichi Kuroda, Masanori Ikeda, Takaji Wakita, Nobuyuki Kato, Makoto Makishima
Format: Article
Language:English
Published: Elsevier 2013-04-01
Series:Journal of Lipid Research
Subjects:
Online Access:http://www.sciencedirect.com/science/article/pii/S0022227520421960
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spelling doaj-a8d9dfd25e3f42a5b9e9a510bbe563052021-04-28T06:06:03ZengElsevierJournal of Lipid Research0022-22752013-04-01544881892Hepatitis C virus NS4B targets lipid droplets through hydrophobic residues in the amphipathic helices[S]Torahiko Tanaka0Kazumichi Kuroda1Masanori Ikeda2Takaji Wakita3Nobuyuki Kato4Makoto Makishima5To whom correspondence should be addressed tanaka.torahiko@nihon-u.ac.jp; Division of Biochemistry, Department of Biomedical Sciences and Nihon University School of Medicine, Tokyo 173-8610, Japan; To whom correspondence should be addressed tanaka.torahiko@nihon-u.ac.jpDivision of Microbiology, Department of Pathology and Microbiology, Nihon University School of Medicine, Tokyo 173-8610, JapanDepartment of Tumor Virology, Okayama University Graduate School of Medicine, Dentistry, and Pharmaceutical Sciences, Okayama 700-8558, Japan; andDepartment of Virology II, National Institute of Infectious Diseases, Tokyo 162-8649, JapanDepartment of Tumor Virology, Okayama University Graduate School of Medicine, Dentistry, and Pharmaceutical Sciences, Okayama 700-8558, Japan; andDivision of Biochemistry, Department of Biomedical Sciences and Nihon University School of Medicine, Tokyo 173-8610, JapanLipid droplets (LD) are dynamic storage organelles that are involved in lipid homeostasis. Hepatitis C virus (HCV) is closely associated with LDs. HCV Core and nonstructural (NS) proteins colocalize with LDs and presumably are involved in virion formation at that site. We demonstrated that HCV NS4B, an integral membrane protein in endoplasmic reticulum (ER), strongly targeted LDs. Confocal imaging studies showed that NS4B localized at the margins of LDs. Biochemical fractionation of HCV-replicating cells suggested that NS4B existed in membranes associated with LDs rather than on the LD surface membrane itself. The N- and C-terminal cytosolic domains of NS4B showed targeting of LDs, with the former being much stronger. In both domains, activity was present in the region containing an amphipathic α-helix, in which 10 hydrophobic residues were identified as putative determinants for targeting LDs. JFH1 mutants with alanine substitutions for the hydrophobic residues were defective for virus replication. W43A mutant with a single alanine substitution showed loss of association of NS4B with LDs and severely reduced release of infectious virions compared with wild-type JFH1. NS4B plays a crucial role in virus replication at the site of virion formation, namely, the microenvironment associated with LDs.http://www.sciencedirect.com/science/article/pii/S0022227520421960alanine substitutionconfocal imagingJFH1RNA transfection
collection DOAJ
language English
format Article
sources DOAJ
author Torahiko Tanaka
Kazumichi Kuroda
Masanori Ikeda
Takaji Wakita
Nobuyuki Kato
Makoto Makishima
spellingShingle Torahiko Tanaka
Kazumichi Kuroda
Masanori Ikeda
Takaji Wakita
Nobuyuki Kato
Makoto Makishima
Hepatitis C virus NS4B targets lipid droplets through hydrophobic residues in the amphipathic helices[S]
Journal of Lipid Research
alanine substitution
confocal imaging
JFH1
RNA transfection
author_facet Torahiko Tanaka
Kazumichi Kuroda
Masanori Ikeda
Takaji Wakita
Nobuyuki Kato
Makoto Makishima
author_sort Torahiko Tanaka
title Hepatitis C virus NS4B targets lipid droplets through hydrophobic residues in the amphipathic helices[S]
title_short Hepatitis C virus NS4B targets lipid droplets through hydrophobic residues in the amphipathic helices[S]
title_full Hepatitis C virus NS4B targets lipid droplets through hydrophobic residues in the amphipathic helices[S]
title_fullStr Hepatitis C virus NS4B targets lipid droplets through hydrophobic residues in the amphipathic helices[S]
title_full_unstemmed Hepatitis C virus NS4B targets lipid droplets through hydrophobic residues in the amphipathic helices[S]
title_sort hepatitis c virus ns4b targets lipid droplets through hydrophobic residues in the amphipathic helices[s]
publisher Elsevier
series Journal of Lipid Research
issn 0022-2275
publishDate 2013-04-01
description Lipid droplets (LD) are dynamic storage organelles that are involved in lipid homeostasis. Hepatitis C virus (HCV) is closely associated with LDs. HCV Core and nonstructural (NS) proteins colocalize with LDs and presumably are involved in virion formation at that site. We demonstrated that HCV NS4B, an integral membrane protein in endoplasmic reticulum (ER), strongly targeted LDs. Confocal imaging studies showed that NS4B localized at the margins of LDs. Biochemical fractionation of HCV-replicating cells suggested that NS4B existed in membranes associated with LDs rather than on the LD surface membrane itself. The N- and C-terminal cytosolic domains of NS4B showed targeting of LDs, with the former being much stronger. In both domains, activity was present in the region containing an amphipathic α-helix, in which 10 hydrophobic residues were identified as putative determinants for targeting LDs. JFH1 mutants with alanine substitutions for the hydrophobic residues were defective for virus replication. W43A mutant with a single alanine substitution showed loss of association of NS4B with LDs and severely reduced release of infectious virions compared with wild-type JFH1. NS4B plays a crucial role in virus replication at the site of virion formation, namely, the microenvironment associated with LDs.
topic alanine substitution
confocal imaging
JFH1
RNA transfection
url http://www.sciencedirect.com/science/article/pii/S0022227520421960
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