Intramembrane proteolysis promotes trafficking of hepatitis C virus core protein to lipid droplets

被引:372
作者
McLauchlan, J
Lemberg, MK
Hope, G
Martoglio, B [1 ]
机构
[1] ETH Honggerberg, Inst Biochem, CH-8093 Zurich, Switzerland
[2] Univ Glasgow, Div Virol, MRC, Virol Unit, Glasgow G11 5JR, Lanark, Scotland
关键词
aspartic protease; HCV; lipid metabolism; SPP; viral polyprotein processing;
D O I
10.1093/emboj/cdf414
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Hepatitis C virus (HCV) is the major causative pathogen associated with liver cirrhosis and hepatocellular carcinoma. The virus has a positive-sense RNA genome encoding a single polyprotein with the virion components located in the N-terminal portion. During biosynthesis of the polyprotein, an internal signal sequence between the core protein and the envelope protein E1 targets the nascent polypeptide to the endoplasmic reticulum (ER) membrane for translocation of E1 into the ER. Following membrane insertion, the signal sequence is cleaved from E1 by signal peptidase. Here we provide evidence that after cleavage by signal peptidase, the signal peptide is further processed by the intramembrane-cleaving protease SPP that promotes the release of core protein from the ER membrane. Core protein is then free for subsequent trafficking to lipid droplets. This study represents an example of a potential role for intramembrane proteolysis in the maturation of a viral protein.
引用
收藏
页码:3980 / 3988
页数:9
相关论文
共 45 条
[1]   Mutagenesis of the NS2B-NS3-mediated cleavage site in the flavivirus capsid protein demonstrates a requirement for coordinated processing [J].
Amberg, SM ;
Rice, CM .
JOURNAL OF VIROLOGY, 1999, 73 (10) :8083-8094
[2]   Hepatitis C virus core protein shows a cytoplasmic localization and associates to cellular lipid storage droplets [J].
Barba, G ;
Harper, F ;
Harada, T ;
Kohara, M ;
Goulinet, S ;
Matsuura, Y ;
Eder, G ;
Schaff, Z ;
Chapman, MJ ;
Miyamura, T ;
Brechot, C .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 1997, 94 (04) :1200-1205
[3]   An infectious molecular clone of a Japanese genotype 1b hepatitis C virus [J].
Beard, MR ;
Abell, G ;
Honda, M ;
Carroll, A ;
Gartland, M ;
Clarke, B ;
Suzuki, K ;
Lanford, R ;
Sangar, DV ;
Lemon, SM .
HEPATOLOGY, 1999, 30 (01) :316-324
[4]   Lipid droplets: Proteins floating on a pool of fat [J].
Brown, DA .
CURRENT BIOLOGY, 2001, 11 (11) :R446-R449
[5]   SEQUENCE-ANALYSIS OF THE CORE GENE OF 14 HEPATITIS-C VIRUS GENOTYPES [J].
BUKH, J ;
PURCELL, RH ;
MILLER, RH .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 1994, 91 (17) :8239-8243
[6]   Molecular virology of hepatitis C virus [J].
Clarke, B .
JOURNAL OF GENERAL VIROLOGY, 1997, 78 :2397-2410
[7]   A retention signal necessary and sufficient for endoplasmic reticulum localization maps to the transmembrane domain of hepatitis C virus glycoprotein E2 [J].
Cocquerel, L ;
Meunier, JC ;
Pillez, A ;
Wychowski, C ;
Dubuisson, J .
JOURNAL OF VIROLOGY, 1998, 72 (03) :2183-2191
[8]   The transmembrane domain of hepatitis C virus glycoprotein E1 is a signal for static retention in the endoplasmic reticulum [J].
Cocquerel, L ;
Duvet, S ;
Meunier, JC ;
Pillez, A ;
Cacan, R ;
Wychowski, C ;
Dubuisson, J .
JOURNAL OF VIROLOGY, 1999, 73 (04) :2641-2649
[9]   PATHOLOGY OF HEPATITIS-C VIRUS-INFECTION [J].
DHILLON, AP ;
DUSHEIKO, GM .
HISTOPATHOLOGY, 1995, 26 (04) :297-309
[10]   Cytosolic deglycosylation process of newly synthesized glycoproteins generates oligomannosides possessing one GlcNAc residue at the reducing end [J].
Duvet, S ;
Labiau, O ;
Mir, AM ;
Kmiécik, D ;
Krag, SS ;
Verbert, A ;
Cacan, R .
BIOCHEMICAL JOURNAL, 1998, 335 :389-396