| Literature DB >> 28093576 |
Ryan P Murelli1, Michael P D'Erasmo1, Danielle R Hirsch1, Christine Meck1, Takashi Masaoka2, Jennifer A Wilson3, Baofeng Zhang4, Rajat K Pal5, Emilio Gallicchio6, John A Beutler3, Stuart F J Le Grice2.
Abstract
HIV Reverse Transcriptase-associated ribonuclease H activity is a promising enzymatic target for drug development that has not been successfully targeted in the clinic. While the α-hydroxytropolone-containing natural products β-thujaplicinol and manicol have emerged as some of the most potent leads described to date, structure-function studies have been limited to the natural products and semi-synthetic derivatives of manicol. Thus, a library of α-hydroxytropolones synthesized through a convenient oxidopyrylium cycloaddition/ring-opening sequence have been tested in in vitro and cell-based assays, and have been analyzed using computational support. These studies reveal new synthetic α-hydroxytropolones that, unlike the natural product leads they are derived from, demonstrate protective antiviral activity in cellular assays.Entities:
Year: 2016 PMID: 28093576 PMCID: PMC5234084 DOI: 10.1039/C6MD00238B
Source DB: PubMed Journal: Medchemcomm ISSN: 2040-2503 Impact factor: 3.597