Abstract
In order to find new molecules for antiviral drug design, we screened 102 ethyl acetate extracts from New-Caledonian flora for antiviral activity against the dengue 2 virus RNA-dependant RNA polymerase (DV-NS5 RdRp). The leaf extract of Dacrydium balansae , which strongly inhibited the DV-NS5, was submitted to bioguided fractionation. Four biflavonoids (1 –4 ), three sterols (5 –7 ), and two stilbene derivatives (8 –9 ) were identified and evaluated for their antiviral potential on the DV-NS5 RdRp. Biflavonoids appeared to be potent inhibitors of DV-NS5 RdRp with IC50 s between 0.26 and 3.12 µM. Inhibitory activity evaluations against the RNA polymerase from other Flaviviridae viruses allowed us to conclude that these compounds are specific inhibitors of the DV RNA polymerase. The strongest inhibitions were observed with hinokiflavone (4 ), but podocarpusflavone A (2 ) is the strongest noncytotoxic inhibitor of the DV-NS5 and it also displayed polymerase inhibitory activity in a DV replicon. A preliminary structure-activity relationship study (SARs) revealed the necessity of the biflavonoid skeleton, the influence of number and position of methoxylations, and the importance of a free rotation of the linkage between the two apigenin monomers of the biflavonoids. To the best of our knowledge, podocarpusflavone A (2 ) is the strongest noncytotoxic non-nucleotide molecule exhibiting a specific inhibitory activity against the RNA polymerase domain of DV-NS5 and thus is promising for chemotherapy development against dengue fever.
Key words
biflavonoids -
Dacrydium balansae
- Podocarpaceae - dengue virus - DV-NS5 RdRp
References
1
Ghosh D, Basu A.
Present perspectives on flaviviral chemotherapy.
Drug Discov Today.
2008;
13
619-624
2 Knipe D. Field's virology, 5th edition. Philadelphia: Lippincott Williams & Wilkins; 2007: 1409-1439
3
Tomlinson S M, Watowich S J.
Anthracene-based inhibitors of dengue virus NS2B–NS3 protease.
Antiviral Res.
2011;
89
127-135
4
Bollati M, Alvarez K, Assenberg R, Baronti C, Canard B, Cook S, Coutard B, Decroly E, de Lamballerie X, Gould E A, Grard G, Grimes J M, Hilgenfeld R, Jansson A M, Malet H, Mancini E J, Mastrangelo E, Mattevi A, Milani M, Moureau G, Neyts J, Owens R J, Ren J, Selisko B, Speroni S, Steuber H, Stuart D I, Unge T, Bolognesi M.
Structure and functionality in flavivirus NS-proteins: perspectives for drug design.
Antiviral Res.
2010;
87
125-148
5
Selisko B, Dutartre H, Guillemot J C, Debarnot C, Benarroch D, Khromykh A, Desprès P, Egloff M P, Canard B.
Comparative mechanistic studies of de novo RNA synthesis by flavivirus RNA-dependent RNA polymerases.
Virology.
2006;
351
145-158
6
Malet H, Massé N, Selisko B, Romette J L, Alvarez K, Guillemot J C, Tolou H, Yap T L, Vasudevan S, Lescar J, Canard B.
The flavivirus polymerase as a target for drug discovery.
Antiviral Res.
2008;
80
23-35
7
Myers N, Mittermeier R A, Mittermeier C G, da Fonseca G A B, Ken J.
Biodiversity hotspots for conservation priorities.
Nature.
2000;
403
853-858
8
Paeshuyse J, Letellier C, Froeyen M, Dutartre H, Vrancken R, Canard B, De Clercq E, Gueiffier A, Teulade J C, Herdewijn P, Puerstinger G, Koenen F, Kerkhofs P, Baraldi P G, Neyts J.
A pyrazolotriazolopyrimidinamine inhibitor of bovine viral diarrhea virus replication that targets the viral RNA-dependent RNA polymerase.
Antiviral Res.
2009;
82
141-147
9
Massé N, Davidson A, Ferron F, Alvarez K, Jacobs M, Romette J L, Canard B, Guillemot J C.
Dengue virus replicons: production of an interserotypic chimera and cell lines from different species, and establishment of a cell-based fluorescent assay to screen inhibitors, validated by the evaluation of ribavirin's activity.
Antiviral Res.
2010;
86
296-305
10
Della Greca M, Monaco P, Previtera L.
Stigmasterols from Typha latifolia .
J Nat Prod.
1990;
53
1430-1435
11
Georges P, Sylvestre M, Ruegger H, Bourgeois P.
Ketosteroids and hydroxyketosteroids, minor metabolites of sugarcane wax.
Steroids.
2006;
71
647-652
12
Markham K R, Sheppard C, Geiger H.
13 C NMR studies of some naturally occuring amentoflavone, and hinokiflavone biflavonoids.
Phytochemistry.
1987;
26
3335-3337
13
McCarthy F O, Chopra J, Ford A, Hogan S A, Kerry J P, O'Brien N M, Ryan E, Maquire A R.
Synthesis, isolation and characterisation of beta-sitosterol and beta-sitosterol oxide derivatives.
Org Biomol Chem.
2005;
3
3059-3065
14
Murias M, Handler N, Erker T, Pleban K, Ecker G, Saiko P, Szekeres T, Jäger W.
Resveratrol analogues as selective cyclooxygenase-2 inhibitors: synthesis and structure-activity relationship.
Bioorg Med Chem.
2004;
12
5571-5578
15
Ryu Y B, Jeong H J, Kim J H, Kim Y M, Park J Y, Kim D, Naguyen T T H, Park S J, Chang J S, Park K H, Rho M C, Lee W S.
Biflavonoids from Torreya nucifera displaying SARS-CoV 3 CLpro inhibition.
Bioorg Med Chem.
2010;
18
7940-7947
16
Schneider Y, Chabert P, Stutzmann J, Coelho D, Fougerousse A, Gossé F, Launay J F, Brouillard R, Raul F.
Resveratrol analog (Z)-3, 5, 4′-trimethoxystilbene is a potent anti-mitotic drug inhibiting tubulin polymerization.
Int J Cancer.
2003;
107
189-196
17
Berry K M, Perry N B, Weavers R T.
Foliage sesquiterpenes of Dacrydium cupressinum identification, variation and biosynthesis.
Phytochemistry.
1985;
24
2893-2898
18
Quinn C J, Gadek P.
Biflavones of Dacrydium sensu lato.
Phytochemistry.
1981;
20
677-681
19
Chong J, Poutaraud A, Hugueney P.
Metabolism and roles of stilbenes in plants.
Plant Sci.
2009;
177
143-155
20
Koonin E.
The phylogeny of RNA-dependent RNA polymerases of positive-strand RNA viruses.
J Gen Virol.
1991;
72
2197-2206
21
Havsteen B H.
The biochemistry and medical significance of the flavonoids.
Pharmacol Ther.
2002;
96
67-202
Mohammed Nour
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