| Literature DB >> 29258862 |
Christin Müller1, Falk W Schulte2, Kerstin Lange-Grünweller2, Wiebke Obermann2, Ramakanth Madhugiri3, Stephan Pleschka1, John Ziebuhr1, Roland K Hartmann2, Arnold Grünweller4.
Abstract
Entities:
Keywords: Cap-dependent translation; Coronavirus; IRES; Picornavirus; Silvestrol; eIF4A
Mesh:
Substances:
Year: 2017 PMID: 29258862 PMCID: PMC7113723 DOI: 10.1016/j.antiviral.2017.12.010
Source DB: PubMed Journal: Antiviral Res ISSN: 0166-3542 Impact factor: 5.970
Fig. 1Analysis of silvestrol effects on reporter gene activity mediated by viral 5′ UTRs. (A) Schematic presentation of the dual luciferase reporter vector. The HCV IRES-driven expression of the Renilla luciferase is eIF4A-independent and was used to normalize transfection efficiencies. (B) Effects of 5 and 10 nM silvestrol on Firefly luciferase activity. The seven 5′ UTRs of EBOV were cloned upstream of the reporter gene. As negative controls the 5′ UTRs of the ß-globin and the ß-actin mRNAs were analyzed. The 5′ UTR of PIM1 served as a positive control. (C) Effects of silvestrol on reporter gene expression in the context of 5′ UTRs from coronaviruses HCoV-229E and MERS-CoV. All measured values were normalized to corresponding DMSO controls. Standard errors of the mean of at least 8 independent experiments are shown.
CC50, EC50 and EC90 values determined for silvestrol-treated cells that were mock infected (CC50) or infected with the indicated viruses (EC50/EC90). MTT assays were performed at 37°C except for cells used for HCoV-229E and HRV A1 infections, which were performed at 33°C (indicated by asterisks). SI, selectivity index. Experiments were done in biological triplicate.
| Cells | Virus | CC50 [μM] | EC50/EC90 [nM] | SI |
|---|---|---|---|---|
| MRC-5 | HCoV-229E | >10* | 3/27 | >3330 |
| MRC-5 | MERS-CoV | >10 | 1.3/12 | >7690 |
| MRC-5 | HRV A1 | >10* | 100/900 | >100 |
| MRC-5 | PV | >10 | 20/180 | >500 |
| PBMCs | HCoV-229E | >1* | 2.8/25 | >350 |
| Huh-7 | HCoV-229E | 0.03* | 40/360 | 0.75 |
| HeLa | HRV A1 | 0.005* | 400/3600 | 0.012 |
| Vero | PV | 0.16 | 100/900 | 1.6 |
Fig. 2Effects of silvestrol in cancer cell lines and Vero cells infected with HCoV-229E, HRV A1 and PV, respectively. Cells were infected with an MOI of 0.1 and grown in cell culture medium containing different concentrations of silvestrol. 24 h p.i., cell culture supernatants were collected and virus titers were analyzed via plaque assay. Virus titers (in percent) were calculated in relation to infected controls without silvestrol treatment, and EC50 values were calculated using non-linear regression analysis. Experiments were done in biological triplicate.
Fig. 3Antiviral activity of silvestrol against (+) ssRNA viruses that utilize canonical (cap-dependent) translation initiation (coronaviruses) or IRES-driven translation initiation mechanisms (members of the genus Enterovirus). Cells were infected with the indicated viruses at an MOI of 0.1 and grown in the presence of different concentrations of silvestrol. Supernatants collected at 24 h p.i. were used to determine viral titers. A, HCoV-229E, MRC-5 cells; B, MERS-CoV, MRC-5 cells; C, HRV A1, MRC-5 cells; D, PV, MRC-5 cells; E, HCoV-229E, PBMCs. Virus titers (in percent) were calculated in relation to infected controls without silvestrol treatment, and EC50 values were calculated using non-linear regression analysis. Experiments were done in biological triplicate.
Fig. 4Analyses of cell cytotoxicity of silvestrol. Effects of silvestrol on cell proliferation were measured by an MTT assay. MRC-5 cells or PBMCs were incubated with the indicated silvestrol concentrations and MTT assays were performed after 24 h. Results were based on three independent experiments (biological triplicates).
Fig. 5Immunofluorescence analysis to visualize the effects of silvestrol on viral dsRNA and nsp8 accumulation in HCoV-229E-infected MRC-5 cells. Cells were infected with an MOI of 3 and incubated with the indicated silvestrol concentrations. Cells were fixed at 12 h p.i. and analyzed by confocal microscopy using specific antibodies for dsRNA (red) and nonstructural protein 8 (nsp8, green). The scale bar in the overview pictures represents 50 µm. (For interpretation of the references to colour in this figure legend, the reader is referred to the Web version of this article.)
Fig. 6Western blot analysis of HCoV-229E protein accumulation in the presence of silvestrol. (A) Huh-7 and (B) MRC-5 cells, respectively, were infected with HCoV-229E at an MOI of 3 and treated with the indicated concentrations of silvestrol. Cell lysates were prepared at 12 h p.i. and 48 h p.i. as indicated and the accumulation of viral N and nsp8 proteins was determined by Western blot analysis using appropriate antibodies (see Materials and Methods). β-actin was used as a loading control. Experiments were done in biological duplicates. Panels A and B show representative experiments.