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Self-Enhancement of Hepatitis C Virus Replication by Promotion of Specific Sphingolipid Biosynthesis
Authors:Yuichi Hirata  Kazutaka Ikeda  Masayuki Sudoh  Yuko Tokunaga  Akemi Suzuki  Leiyun Weng  Masatoshi Ohta  Yoshimi Tobita  Ken Okano  Kazuhisa Ozeki  Kenichi Kawasaki  Takuo Tsukuda  Asao Katsume  Yuko Aoki  Takuya Umehara  Satoshi Sekiguchi  Tetsuya Toyoda  Kunitada Shimotohno  Tomoyoshi Soga  Masahiro Nishijima  Ryo Taguchi  Michinori Kohara
Abstract:Lipids are key components in the viral life cycle that affect host-pathogen interactions. In this study, we investigated the effect of HCV infection on sphingolipid metabolism, especially on endogenous SM levels, and the relationship between HCV replication and endogenous SM molecular species. We demonstrated that HCV induces the expression of the genes (SGMS1 and 2) encoding human SM synthases 1 and 2. We observed associated increases of both total and individual sphingolipid molecular species, as assessed in human hepatocytes and in the detergent-resistant membrane (DRM) fraction in which HCV replicates. SGMS1 expression had a correlation with HCV replication. Inhibition of sphingolipid biosynthesis with a hepatotropic serine palmitoyltransferase (SPT) inhibitor, NA808, suppressed HCV-RNA production while also interfering with sphingolipid metabolism. Further, we identified the SM molecular species that comprise the DRM fraction and demonstrated that these endogenous SM species interacted with HCV nonstructural 5B polymerase to enhance viral replication. Our results reveal that HCV alters sphingolipid metabolism to promote viral replication, providing new insights into the formation of the HCV replication complex and the involvement of host lipids in the HCV life cycle.
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