| Literature DB >> 25908170 |
María B Mazzucco1,2, Laura B Talarico3,4, Sezen Vatansever5, Ana C Carro6,7, Mirta L Fascio8, Norma B D'Accorso9, Cybele C García10,11, Elsa B Damonte12,13.
Abstract
BACKGROUND: Dengue virus (DENV), a member of the family Flaviviridae, is at present the most widespread causative agent of a human viral disease transmitted by mosquitoes. Despite the increasing incidence of this pathogen, there are no antiviral drugs or vaccines currently available for treatment or prevention. In a previous screening assay, we identified a group of N-allyl acridones as effective virus inhibitors. Here, the antiviral activity and mode of action targeted to viral RNA replication of one of the most active DENV-2 inhibitors was further characterized.Entities:
Mesh:
Substances:
Year: 2015 PMID: 25908170 PMCID: PMC4407772 DOI: 10.1186/s12929-015-0134-2
Source DB: PubMed Journal: J Biomed Sci ISSN: 1021-7770 Impact factor: 8.410
Figure 1Cytotoxicity and antiviral activity of 3b. (A) Chemical structure of compound 3b. (B) Vero cells were incubated for 96 h in the presence of different concentrations of 3b and then cell viability was determined by MTT assay (■). Other set of cultures were infected with DENV-2 (MOI 0.1 PFU/cell) in the presence or absence of 3b and virus yields were determined at 48 h p.i. (□). (C) Effect of 3b on cell protein synthesis. Vero cells were incubated for 48 h with or without 100 μM 3b. Then, cells were labeled with 100 μCi/ml EXPRE35S-35S for 4 h and polypeptides were electrophoresed. (D) Vero cells were infected with DENV-1 (■), DENV-3(▲) or DENV-4 (∆) at a MOI of 0.1 PFU/cell in the presence or absence of 3b and virus yields were determined at 48 h p.i. (E) Cytotoxicity (■) and antiviral activity (□) against DENV-2 (MOI 0.1 PFU/cell) were determined in HeLa cells as in (B). In (B), (D) and (E) results are expressed as % cell viability or virus yield with respect to control without drug treatment and represent the mean of three independent experiments ± standard deviation.
Figure 2Effect of treatment of cells or virus with 3b before and during infection. Pretreatment of cells: Vero cells were incubated with maintenance medium containing or not 100 μM 3b for 2 h at 37°C, then compound was removed and cells were infected with DENV-2. Virus yields were determined at 48 h p.i. Pretreatment of virus: DENV-2 suspensions were incubated with MEM containing or not 100 μM 3b for 1.5 h at 37°C and then remaining infectivity was determined by plaque assay. Treatment during infection: Compound was added to Vero cells after virus adsorption and maintained for 48 h at 37°C, when virus yields were determined. Results are expressed as percent of remaining infectivity in compound-treated samples compared to untreated ones. Each value is the mean of triplicate assays ± standard deviation.
Antiviral activity profile of 3b against DENV serotypes
|
|
|
|
|---|---|---|
| DENV-1 | 26.7 ± 1.8 | >37.3 |
| DENV-2 | 13.5 ± 0.9 | >74.1 |
| DENV-3 | 27.1 ± 2.1 | >36.9 |
| DENV-4 | 12.5 ± 0.8 | >80.0 |
aEffective concentration 50%: compound concentration required to reduce virus yields at 48 h p.i. by 50%. Values are the mean from triplicate independent tests ± standard deviation.
bSelectivity index: ratio CC50/EC50. The CC50 for 3b is > 1000 μM.
Figure 3Effect of 3b on DENV-2 entry, RNA synthesis and protein expression. (A) Vero cells were infected with DENV-2 in the absence or presence of 100 μM 3b. After 15 min adsorption at 4°C indirect immunofluorescence staining of E glycoprotein was performed by using mouse monoclonal antibody against DENV E glycoprotein and fluorescein isothiocyanate-labeled goat anti-mouse IgG. Cells were stained with Evans blue. Magnification: 1000X. (B) DENV-2 was adsorbed to Vero cells for 1 h at 4°C adsorption. Then, cells were incubated at 37°C for 1 h in medium containing or not 100 μM 3b, and thereafter cells were stained for indirect immunofluorescence as above. Magnification: 400X. (C) Vero cells were infected with DENV-2 and incubated for 8, 24 and 48 h in the absence or presence of 100 μM 3b. At each time point, total RNA was extracted and cDNA was synthesized with random primers. These cDNAs were amplified by real time PCR using specific primers to amplify the ns1 gene, and cellular actin was used for normalization. Results are expressed as % inhibition DENV-2 RNA level respect to viral control. (D) Vero cells were infected with DENV-2 in the absence (virus control VC) or presence (3b) of 100 μM 3b. CC: cell control. At 48 h p.i. indirect immunofluorescence staining of E glycoprotein was performed as in (A). Magnification: 400X.
Figure 4Reversal of inhibition by exogenous guanosine. Vero cells were infected with DENV-2 and treated with 100 μM 3b (A) or 200 μM RIB (B) in the presence or absence of different guanosine concentrations. Other set of cultures were infected with DENV-2 and incubated with different concentrations of guanosine alone (C). After 48 h, extracellular virus yields were determined by plaque formation. Each value is the mean of triplicate assays ± standard deviation. (***), P ≤ 0.001.
Figure 5Docking modeling between the compound 3b and the postulated target protein IMPDH. (A) 3b binds to the active site of the IMPHD enzyme through 2 hydrogen bonds and hydrophobic interaction. (B) IMP interaction cavity consists of SER68, MET70, GLY328, SER329, ILE330, CYS331, GLU335, ASP364, GLY365, GLY366, GLY387, SER388. (C) 3b made a hydrogen bond with SER68 and hydrophobic interactions with SER68, MET70, ASP274, SER275, SER276, ASN303, ARG322, GLY324, MET325, SER327, GLY328, SER329, GLU335, ASP364, GLY365. (D) NAD interaction pocket residues are THR45, THR252, HIS253, ASP274, SER275, SER276, PHE282, ASN303, ARG322, HIS466, GLN469. (E) Two hydrogen bonds existed between 3b and ASN303, ARG322. 3b also made hydrophobic interactions with SER276, ASN303, ARG322, MET325, GLY326, CYS331, ILE332, GLN334, LEU337. (F) RIB binding site includes SER68, MET70, ARG322, GLY328, SER329, ILE330, CYS331, ASP364, GLY365, GLY366, GLY387, SER388, TYR411, GLY413, MET414, GLY415, GLN441. (G) 3b made hydrogen bonds with SER327, GLY328 and hydrophobic interactions with PRO69, MET70, SER275, ASN303, ARG322, GLY324, GLY326, SER327, GLY328, ASP364, GLY365.(H) HIS253, ASP274, SER275, SER276, PHE282, ASN303, ARG322, GLY324, MET325, GLY326, CYS331, THR333 involves in MYD activity cavity. (I) 3b made hydrophobic interactions with ASP274, SER275, SER276, ASN303, GLY324, MET325, GLY326, SER327, GLY328, ASP364.
Figure 6Prediction affinity about 3b-IMPHD interaction (A) Binding of 3b to IMPDH active site. (B) Binding of 3b to RIB monophosphate inhibitory site. (C) Binding of 3b to IMP activity site.