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Inhibition of Both Protease and Helicase Activities of Hepatitis C Virus NS3 by an Ethyl Acetate Extract of Marine Sponge Amphimedon sp

Combination therapy with ribavirin, interferon, and viral protease inhibitors could be expected to elicit a high level of sustained virologic response in patients infected with hepatitis C virus (HCV). However, several severe side effects of this combination therapy have been encountered in clinical...

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Autores principales: Fujimoto, Yuusuke, Salam, Kazi Abdus, Furuta, Atsushi, Matsuda, Yasuyoshi, Fujita, Osamu, Tani, Hidenori, Ikeda, Masanori, Kato, Nobuyuki, Sakamoto, Naoya, Maekawa, Shinya, Enomoto, Nobuyuki, de Voogd, Nicole J., Nakakoshi, Masamichi, Tsubuki, Masayoshi, Sekiguchi, Yuji, Tsuneda, Satoshi, Akimitsu, Nobuyoshi, Noda, Naohiro, Yamashita, Atsuya, Tanaka, Junichi, Moriishi, Kohji
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2012
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3492463/
https://www.ncbi.nlm.nih.gov/pubmed/23144928
http://dx.doi.org/10.1371/journal.pone.0048685
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author Fujimoto, Yuusuke
Salam, Kazi Abdus
Furuta, Atsushi
Matsuda, Yasuyoshi
Fujita, Osamu
Tani, Hidenori
Ikeda, Masanori
Kato, Nobuyuki
Sakamoto, Naoya
Maekawa, Shinya
Enomoto, Nobuyuki
de Voogd, Nicole J.
Nakakoshi, Masamichi
Tsubuki, Masayoshi
Sekiguchi, Yuji
Tsuneda, Satoshi
Akimitsu, Nobuyoshi
Noda, Naohiro
Yamashita, Atsuya
Tanaka, Junichi
Moriishi, Kohji
author_facet Fujimoto, Yuusuke
Salam, Kazi Abdus
Furuta, Atsushi
Matsuda, Yasuyoshi
Fujita, Osamu
Tani, Hidenori
Ikeda, Masanori
Kato, Nobuyuki
Sakamoto, Naoya
Maekawa, Shinya
Enomoto, Nobuyuki
de Voogd, Nicole J.
Nakakoshi, Masamichi
Tsubuki, Masayoshi
Sekiguchi, Yuji
Tsuneda, Satoshi
Akimitsu, Nobuyoshi
Noda, Naohiro
Yamashita, Atsuya
Tanaka, Junichi
Moriishi, Kohji
author_sort Fujimoto, Yuusuke
collection PubMed
description Combination therapy with ribavirin, interferon, and viral protease inhibitors could be expected to elicit a high level of sustained virologic response in patients infected with hepatitis C virus (HCV). However, several severe side effects of this combination therapy have been encountered in clinical trials. In order to develop more effective and safer anti-HCV compounds, we employed the replicon systems derived from several strains of HCV to screen 84 extracts from 54 organisms that were gathered from the sea surrounding Okinawa Prefecture, Japan. The ethyl acetate-soluble extract that was prepared from marine sponge Amphimedon sp. showed the highest inhibitory effect on viral replication, with EC(50) values of 1.5 and 24.9 µg/ml in sub-genomic replicon cell lines derived from genotypes 1b and 2a, respectively. But the extract had no effect on interferon-inducing signaling or cytotoxicity. Treatment with the extract inhibited virus production by 30% relative to the control in the JFH1-Huh7 cell culture system. The in vitro enzymological assays revealed that treatment with the extract suppressed both helicase and protease activities of NS3 with IC(50) values of 18.9 and 10.9 µg/ml, respectively. Treatment with the extract of Amphimedon sp. inhibited RNA-binding ability but not ATPase activity. These results suggest that the novel compound(s) included in Amphimedon sp. can target the protease and helicase activities of HCV NS3.
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spelling pubmed-34924632012-11-09 Inhibition of Both Protease and Helicase Activities of Hepatitis C Virus NS3 by an Ethyl Acetate Extract of Marine Sponge Amphimedon sp Fujimoto, Yuusuke Salam, Kazi Abdus Furuta, Atsushi Matsuda, Yasuyoshi Fujita, Osamu Tani, Hidenori Ikeda, Masanori Kato, Nobuyuki Sakamoto, Naoya Maekawa, Shinya Enomoto, Nobuyuki de Voogd, Nicole J. Nakakoshi, Masamichi Tsubuki, Masayoshi Sekiguchi, Yuji Tsuneda, Satoshi Akimitsu, Nobuyoshi Noda, Naohiro Yamashita, Atsuya Tanaka, Junichi Moriishi, Kohji PLoS One Research Article Combination therapy with ribavirin, interferon, and viral protease inhibitors could be expected to elicit a high level of sustained virologic response in patients infected with hepatitis C virus (HCV). However, several severe side effects of this combination therapy have been encountered in clinical trials. In order to develop more effective and safer anti-HCV compounds, we employed the replicon systems derived from several strains of HCV to screen 84 extracts from 54 organisms that were gathered from the sea surrounding Okinawa Prefecture, Japan. The ethyl acetate-soluble extract that was prepared from marine sponge Amphimedon sp. showed the highest inhibitory effect on viral replication, with EC(50) values of 1.5 and 24.9 µg/ml in sub-genomic replicon cell lines derived from genotypes 1b and 2a, respectively. But the extract had no effect on interferon-inducing signaling or cytotoxicity. Treatment with the extract inhibited virus production by 30% relative to the control in the JFH1-Huh7 cell culture system. The in vitro enzymological assays revealed that treatment with the extract suppressed both helicase and protease activities of NS3 with IC(50) values of 18.9 and 10.9 µg/ml, respectively. Treatment with the extract of Amphimedon sp. inhibited RNA-binding ability but not ATPase activity. These results suggest that the novel compound(s) included in Amphimedon sp. can target the protease and helicase activities of HCV NS3. Public Library of Science 2012-11-07 /pmc/articles/PMC3492463/ /pubmed/23144928 http://dx.doi.org/10.1371/journal.pone.0048685 Text en © 2012 Fujimoto et al http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Fujimoto, Yuusuke
Salam, Kazi Abdus
Furuta, Atsushi
Matsuda, Yasuyoshi
Fujita, Osamu
Tani, Hidenori
Ikeda, Masanori
Kato, Nobuyuki
Sakamoto, Naoya
Maekawa, Shinya
Enomoto, Nobuyuki
de Voogd, Nicole J.
Nakakoshi, Masamichi
Tsubuki, Masayoshi
Sekiguchi, Yuji
Tsuneda, Satoshi
Akimitsu, Nobuyoshi
Noda, Naohiro
Yamashita, Atsuya
Tanaka, Junichi
Moriishi, Kohji
Inhibition of Both Protease and Helicase Activities of Hepatitis C Virus NS3 by an Ethyl Acetate Extract of Marine Sponge Amphimedon sp
title Inhibition of Both Protease and Helicase Activities of Hepatitis C Virus NS3 by an Ethyl Acetate Extract of Marine Sponge Amphimedon sp
title_full Inhibition of Both Protease and Helicase Activities of Hepatitis C Virus NS3 by an Ethyl Acetate Extract of Marine Sponge Amphimedon sp
title_fullStr Inhibition of Both Protease and Helicase Activities of Hepatitis C Virus NS3 by an Ethyl Acetate Extract of Marine Sponge Amphimedon sp
title_full_unstemmed Inhibition of Both Protease and Helicase Activities of Hepatitis C Virus NS3 by an Ethyl Acetate Extract of Marine Sponge Amphimedon sp
title_short Inhibition of Both Protease and Helicase Activities of Hepatitis C Virus NS3 by an Ethyl Acetate Extract of Marine Sponge Amphimedon sp
title_sort inhibition of both protease and helicase activities of hepatitis c virus ns3 by an ethyl acetate extract of marine sponge amphimedon sp
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3492463/
https://www.ncbi.nlm.nih.gov/pubmed/23144928
http://dx.doi.org/10.1371/journal.pone.0048685
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