| Literature DB >> 28637198 |
Francesca Esposito1, Manuela Mandrone2, Claudia Del Vecchio3, Ilaria Carli3, Simona Distinto1, Angela Corona2, Mariacaterina Lianza2, Dario Piano1, Massimo Tacchini4, Elias Maccioni1, Filippo Cottiglia1, Elisa Saccon3, Ferruccio Poli2, Cristina Parolin3, Enzo Tramontano1,5.
Abstract
Despite the availability of several anti-retrovirals, there is still an urgent need for developing novel therapeutic strategies and finding new drugs against underexplored HIV-1 targets. Among them, there are the HIV-1 reverse transcriptase (RT)-associated ribonuclease H (RNase H) function and the cellular α-glucosidase, involved in the control mechanisms of N-linked glycoproteins formation in the endoplasmic reticulum. It is known that many natural compounds, such as pentacyclic triterpenes, are a promising class of HIV-1 inhibitors. Hence, here we tested the pentacyclic triterpene Lupeol, showing that it inhibits the HIV-1 RT-associated RNase H function. We then performed combination studies of Lupeol and the active site RNase H inhibitor RDS1759, and blind docking calculations, demonstrating that Lupeol binds to an HIV-1 RT allosteric pocket. On the bases of these results and searching for potential multitarget active drug supplement, we also investigated the anti-HIV-1 activity of Hemidesmus indicus, an Ayurveda medicinal plant containing Lupeol. Results supported the potential of this plant as a valuable multitarget active drug source. In fact, by virtue of its numerous active metabolites, H. indicus was able to inhibit not only the RT-associated RNase H function, but also the HIV-1 RT-associated RNA-dependent DNA polymerase activity and the cellular α-glucosidase. © FEMS 2017. All rights reserved. For permissions, please e-mail: journals.permissions@oup.com.Entities:
Keywords: Hemidesmus indicus; Lupeol; RNase H; RT; anti-HIV-1; multitarget inhibitors; α-glucosidase
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Year: 2017 PMID: 28637198 DOI: 10.1093/femspd/ftx065
Source DB: PubMed Journal: Pathog Dis ISSN: 2049-632X Impact factor: 3.166