Utilize este identificador para referenciar este registo: https://hdl.handle.net/1822/73355

TítuloSemi-synthesis of small molecules of aminocarbazoles: tumor growth inhibition and potential impact on p53
Autor(es)Long, Solida
Loureiro, Joana B.
Carvalho, Carla
Gales, Luís
Saraiva, Lucília
Pinto, Madalena M. M.
Puthongking, Ploenthip
Sousa, Emília
Palavras-chaveAminocarbazoles
Heptaphylline
Alkaloids
Tumor
p53
Mutant
Data15-Mar-2021
EditoraMultidisciplinary Digital Publishing Institute (MDPI)
RevistaMolecules
CitaçãoLong, S.; Loureiro, J.B.; Carvalho, C.; Gales, L.; Saraiva, L.; Pinto, M.M.M.; Puthongking, P.; Sousa, E. Semi-Synthesis of Small Molecules of Aminocarbazoles: Tumor Growth Inhibition and Potential Impact on p53. Molecules 2021, 26, 1637. https://doi.org/10.3390/molecules26061637
Resumo(s)The tumor suppressor p53 is inactivated by mutation in approximately 50% of human cancers. Small molecules that bind and stabilize those mutants may represent effective anticancer drugs. Herein, we report the tumor cell growth inhibitory activity of carbazole alkaloids and amino derivatives, as well as their potential activation of p53. Twelve aminocarbazole alkaloids were semi-synthesized from heptaphylline (<b>1</b>), 7-methoxy heptaphylline (<b>2</b>), and 7-methoxymukonal (<b>3</b>), isolated from <i>Clausena harmandiana</i>, using a reductive amination protocol. Naturally-occurring carbazoles 1–3 and their amino derivatives were evaluated for their potential effect on wild-type and mutant p53 activity using a yeast screening assay and on human tumor cell lines. Naturally-occurring carbazoles 1–3 showed the most potent growth inhibitory effects on wild-type p53-expressing cells, being heptaphylline (<b>1</b>) the most promising in all the investigated cell lines. However, compound <b>1</b> also showed growth inhibition against non-tumor cells. Conversely, semi-synthetic aminocarbazole 1d showed an interesting growth inhibitory activity in tumor cells expressing both wild-type and mutant p53, exhibiting low growth inhibition on non-tumor cells. The yeast assay showed a potential reactivation of mutant p53 by heptaphylline derivatives, including compound <b>1d</b>. The results obtained indicate that carbazole alkaloids may represent a promising starting point to search for new mutp53-reactivating agents with promising applications in cancer therapy.
TipoArtigo
URIhttps://hdl.handle.net/1822/73355
DOI10.3390/molecules26061637
e-ISSN1420-3049
Versão da editorahttps://www.mdpi.com/1420-3049/26/6/1637
Arbitragem científicayes
AcessoAcesso aberto
Aparece nas coleções:BUM - MDPI

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