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◆ The Journal of Organic Chemistry2026-02-09· Chemistry

Harperoids A–F, Complex Polyprenylated Acylphloroglucinols from <i>Harrisonia perforata</i> that Reverse Multidrug Resistance by Targeting ABC Transporter Function

Pei-Pei An, Ying Li, Jin-Hai Yu, Bin Zhou, Jian-Min Yue

原始摘要(英文原文)· Original abstract
Utilizing an LC/MS-MS-based feature-based molecular networking (FBMN) strategy, six undescribed PPAPs ( 1 – 6 ) characterized by an acetyl substituent at the C-1 position of their phloroglucinol scaffold, were efficiently isolated from the roots of Harrisonia perforata . Notably, compund 1 displays an unconventional 5/5/6/5 ring architecture, while compounds 5 and 6 represent the first case incorporating a benzofuran core and a geranyl-derived cyclohexanol unit. Their structures were unequivocally elucidated through comprehensive spectroscopic data analysis, TDDFT-ECD calculations, and X-ray crystallographic studies. Interestingly, compound 3 at 20 μ M exhibited negligible cytotoxicity but significantly potentiated the activity of paclitaxel against HCT-15 cells by 42.8-fold. Mechanistic studies further demonstrated that compound 3 did not significantly alter the expression levels of ATP-binding cassette (ABC) transporters, but potently inhibited the transport function of both ABCB1 and ABCG2. Molecular docking reveals that compound 3 stably binds to the central substrate-binding cavities of ABCB1 and ABCG2, with its binding primarily stabilized by hydrogen bonds and hydrophobic interactions.
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Harperoids A–F, Complex Polyprenylated Acylphloroglucinols from <i>Harrisonia perforata</i> that Reverse Multidrug Resistance by Targeting ABC Transporter Function — 科研速览 Science Skim