Analysis of Interferon Signaling by Infectious Hepatitis C Virus Clones with Substitutions of Core Amino Acids 70 and 91

Author:

Funaoka Yusuke1,Sakamoto Naoya12,Suda Goki1,Itsui Yasuhiro1,Nakagawa Mina12,Kakinuma Sei1,Watanabe Takako1,Mishima Kako1,Ueyama Mayumi1,Onozuka Izumi1,Nitta Sayuri1,Kitazume Akiko1,Kiyohashi Kei1,Murakawa Miyako1,Azuma Seishin1,Tsuchiya Kiichiro1,Watanabe Mamoru1

Affiliation:

1. Department of Gastroenterology and Hepatology, Tokyo Medical and Dental University, Tokyo, Japan

2. Department for Hepatitis Control, Tokyo Medical and Dental University, Tokyo, Japan

Abstract

ABSTRACT Substitution of amino acids 70 and 91 in the hepatitis C virus (HCV) core region is a significant predictor of poor responses to peginterferon-plus-ribavirin therapy, while their molecular mechanisms remain unclear. Here we investigated these differences in the response to alpha interferon (IFN) by using HCV cell culture with R70Q, R70H, and L91M substitutions. IFN treatment of cells transfected or infected with the wild type or the mutant HCV clones showed that the R70Q, R70H, and L91M core mutants were significantly more resistant than the wild type. Among HCV-transfected cells, intracellular HCV RNA levels were significantly higher for the core mutants than for the wild type, while HCV RNA in culture supernatant was significantly lower for these mutants than for the wild type. IFN-induced phosphorylation of STAT1 and STAT2 and expression of the interferon-inducible genes were significantly lower for the core mutants than for the wild type, suggesting cellular unresponsiveness to IFN. The expression level of an interferon signal attenuator, SOCS3, was significantly higher for the R70Q, R70H, and L91M mutants than for the wild type. Interleukin 6 (IL-6), which upregulates SOCS3, was significantly higher for the R70Q, R70H, and L91M mutants than for the wild type, suggesting interferon resistance, possibly through IL-6-induced, SOCS3-mediated suppression of interferon signaling. Expression levels of endoplasmic reticulum (ER) stress proteins were significantly higher in cells transfected with a core mutant than in those transfected with the wild type. In conclusion, HCV R70 and L91 core mutants were resistant to interferon in vitro , and the resistance may be induced by IL-6-induced upregulation of SOCS3. Those mechanisms may explain clinical interferon resistance of HCV core mutants.

Publisher

American Society for Microbiology

Subject

Virology,Insect Science,Immunology,Microbiology

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