4.6 Article

Synthesis, Biological Evaluation, and In Silico Studies of Novel Aminated Xanthones as Potential p53-Activating Agents

期刊

MOLECULES
卷 24, 期 10, 页码 -

出版社

MDPI
DOI: 10.3390/molecules24101975

关键词

antitumor activity; computational docking; MDM2-p53 interaction; xanthones; yeast-based assays

资金

  1. FCT-Foundation for Science and Technology
  2. European Regional Development Fund (ERDF)
  3. COMPETE [UID/Multi/04423/2019, UID/QUI/50006/2019, (3599-PPCDT) PTDC/DTP-FTO/1981/2014-POCI-01-0145-FEDER-016581, POCI-01-0145-FEDER-028736, PTDC/MAR-BIO/4694/2014 (POCI-01-0145-FEDER-016790), PTDC/MAR-BIO/4694/2014 (3599-PPCDT)]
  4. FCT [PD/BD/114046/2015, SFRH/BD/128673/2017]
  5. Programa Operacional Capital Humano (POCH)
  6. BiotechHealth Programme [PD/00016/2012]
  7. Fundação para a Ciência e a Tecnologia [PD/BD/114046/2015, SFRH/BD/128673/2017] Funding Source: FCT

向作者/读者索取更多资源

Xanthone scaffold has been regarded as an attractive chemical tool in the search for bioactive molecules with antitumor activity, and in particular two xanthone derivatives, 12-hydroxy-2,2-dimethyl-3,4-dihydro-2H,6H-pyrano [3,2-b]xanthen-6-one (4) and 3,4-dimethoxy-9-oxo-9H-xanthene-1-carbaldehyde (5), were described as a murine double minute 2 (MDM2)-p53 inhibitor and a TAp73 activator, respectively. The xanthone 5 was used as a starting point for the construction of a library of 3,4-dioxygenated xanthones bearing chemical moieties of described MDM2-p53 inhibitors. Eleven aminated xanthones were successfully synthesized and initially screened for their ability to disrupt the MDM2-p53 interaction using a yeast cell-based assay. With this approach, xanthone 37 was identified as a putative p53-activating agent through inhibition of interaction with MDM2. Xanthone 37 inhibited the growth of human colon adenocarcinoma HCT116 cell lines in a p53-dependent manner. The growth inhibitory effect of xanthone 37 was associated with the induction of G1-phase cell cycle arrest and increased protein expression levels of p53 transcriptional targets. These results demonstrated the potential usefulness of coupling amine-containing structural motifs of known MDM2-p53 disruptors into a 3,4-dioxygenated xanthone scaffold in the design of novel and potent p53 activators with antitumor activity and favorable drug-like properties. Moreover, in silico docking studies were performed in order to predict the binding poses and residues involved in the potential MDM2-p53 interaction.

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