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A new microtubule-stabilizing agent shows potent antiviral effects against African swine fever virus with no cytotoxicity.
Sirakanyan, Samvel; Arabyan, Erik; Hakobyan, Astghik; Hakobyan, Tamara; Chilingaryan, Garri; Sahakyan, Harutyun; Sargsyan, Arsen; Arakelov, Grigor; Nazaryan, Karen; Izmailyan, Roza; Abroyan, Liana; Karalyan, Zaven; Arakelova, Elina; Hakobyan, Elmira; Hovakimyan, Anush; Serobian, Andre; Neves, Marco; Ferreira, João; Ferreira, Fernando; Zakaryan, Hovakim.
Afiliação
  • Sirakanyan S; Scientific Technological Center of Organic and Pharmaceutical Chemistry of NAS, Institute of Fine Organic Chemistry of A.L. Mnjoyan, Yerevan, Armenia.
  • Arabyan E; Group of Antiviral Defense Mechanisms, Institute of Molecular Biology of NAS, Yerevan, Armenia.
  • Hakobyan A; Group of Antiviral Defense Mechanisms, Institute of Molecular Biology of NAS, Yerevan, Armenia.
  • Hakobyan T; Group of Antiviral Defense Mechanisms, Institute of Molecular Biology of NAS, Yerevan, Armenia.
  • Chilingaryan G; Group of Antiviral Defense Mechanisms, Institute of Molecular Biology of NAS, Yerevan, Armenia.
  • Sahakyan H; Group of Antiviral Defense Mechanisms, Institute of Molecular Biology of NAS, Yerevan, Armenia.
  • Sargsyan A; Group of Antiviral Defense Mechanisms, Institute of Molecular Biology of NAS, Yerevan, Armenia.
  • Arakelov G; Group of Antiviral Defense Mechanisms, Institute of Molecular Biology of NAS, Yerevan, Armenia.
  • Nazaryan K; Group of Antiviral Defense Mechanisms, Institute of Molecular Biology of NAS, Yerevan, Armenia.
  • Izmailyan R; Russian-Armenian University, Yerevan, Armenia.
  • Abroyan L; Group of Antiviral Defense Mechanisms, Institute of Molecular Biology of NAS, Yerevan, Armenia.
  • Karalyan Z; Group of Antiviral Defense Mechanisms, Institute of Molecular Biology of NAS, Yerevan, Armenia.
  • Arakelova E; Group of Antiviral Defense Mechanisms, Institute of Molecular Biology of NAS, Yerevan, Armenia.
  • Hakobyan E; Department of Medical Biology, Yerevan State Medical University, Yerevan, Armenia.
  • Hovakimyan A; Group of Antiviral Defense Mechanisms, Institute of Molecular Biology of NAS, Yerevan, Armenia.
  • Serobian A; Scientific Technological Center of Organic and Pharmaceutical Chemistry of NAS, Institute of Fine Organic Chemistry of A.L. Mnjoyan, Yerevan, Armenia.
  • Neves M; Scientific Technological Center of Organic and Pharmaceutical Chemistry of NAS, Institute of Fine Organic Chemistry of A.L. Mnjoyan, Yerevan, Armenia.
  • Ferreira J; Advanced Solutions Center, Foundation for Armenian Science and Technology, Yerevan, Armenia.
  • Ferreira F; Instituto de Medicina Molecular, Faculdade de Medicina, Universidade de Lisboa, Lisboa, Portugal.
  • Zakaryan H; Instituto de Medicina Molecular, Faculdade de Medicina, Universidade de Lisboa, Lisboa, Portugal.
Emerg Microbes Infect ; 10(1): 783-796, 2021 Dec.
Article em En | MEDLINE | ID: mdl-33706677
ABSTRACT
African swine fever virus (ASFV) is the causal agent of a fatal disease of domestic swine for which no effective antiviral drugs are available. Recently, it has been shown that microtubule-targeting agents hamper the infection cycle of different viruses. In this study, we conducted in silico screening against the colchicine binding site (CBS) of tubulin and found three new compounds with anti-ASFV activity. The most promising antiviral compound (6b) reduced ASFV replication in a dose-dependent manner (IC50 = 19.5 µM) with no cellular (CC50 > 500 µM) and animal toxicity (up to 100 mg/kg). Results also revealed that compound 6b interfered with ASFV attachment, internalization and egress, with time-of-addition assays, showing that compound 6b has higher antiviral effects when added within 2-8 h post-infection. This compound significantly inhibited viral DNA replication and disrupted viral protein synthesis. Experiments with ASFV-infected porcine macrophages disclosed that antiviral effects of the compound 6b were similar to its effects in Vero cells. Tubulin polymerization assay and confocal microscopy demonstrated that compound 6b promoted tubulin polymerization, acting as a microtubule-stabilizing, rather than a destabilizing agent in cells. In conclusion, this work emphasizes the idea that microtubules can be targets for drug development against ASFV.
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Texto completo: 1 Base de dados: MEDLINE Assunto principal: Antivirais / Tubulina (Proteína) / Febre Suína Africana / Vírus da Febre Suína Africana Limite: Animals Idioma: En Ano de publicação: 2021 Tipo de documento: Article

Texto completo: 1 Base de dados: MEDLINE Assunto principal: Antivirais / Tubulina (Proteína) / Febre Suína Africana / Vírus da Febre Suína Africana Limite: Animals Idioma: En Ano de publicação: 2021 Tipo de documento: Article