Literature DB >> 27864075

The natural compound silvestrol is a potent inhibitor of Ebola virus replication.

Nadine Biedenkopf1, Kerstin Lange-Grünweller2, Falk W Schulte2, Aileen Weißer2, Christin Müller3, Dirk Becker1, Stephan Becker1, Roland K Hartmann2, Arnold Grünweller4.   

Abstract

The DEAD-box RNA helicase eIF4A, which is part of the heterotrimeric translation initiation complex in eukaryotes, is an important novel drug target in cancer research because its helicase activity is required to unwind extended and highly structured 5'-UTRs of several proto-oncogenes. Silvestrol, a natural compound isolated from the plant Aglaia foveolata, is a highly efficient, non-toxic and specific inhibitor of eIF4A. Importantly, 5'-capped viral mRNAs often contain structured 5'-UTRs as well, which may suggest a dependence on eIF4A for their translation by the host protein synthesis machinery. In view of the recent Ebola virus (EBOV) outbreak in West Africa, the identification of potent antiviral compounds is urgently required. Since Ebola mRNAs are 5'-capped and harbor RNA secondary structures in their extended 5'-UTRs, we initiated a BSL4 study to analyze silvestrol in EBOV-infected Huh-7 cells and in primary human macrophages for its antiviral activity. We observed that silvestrol inhibits EBOV infection at low nanomolar concentrations, as inferred from large reductions of viral titers. This correlated with an almost complete disappearance of EBOV proteins, comparable in effect to the translational shutdown of expression of the proto-oncoprotein PIM1, a cellular kinase known to be affected by silvestrol. Effective silvestrol concentrations were non-toxic in the tested cell systems. Thus, silvestrol appears to be a promising first-line drug for the treatment of acute EBOV and possibly other viral infections.
Copyright © 2016 Elsevier B.V. All rights reserved.

Entities:  

Keywords:  Ebola; PIM1; Primary macrophages; Silvestrol; Translation inhibition; eIF4A helicase

Mesh:

Substances:

Year:  2016        PMID: 27864075     DOI: 10.1016/j.antiviral.2016.11.011

Source DB:  PubMed          Journal:  Antiviral Res        ISSN: 0166-3542            Impact factor:   5.970


  39 in total

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