Garcinol and anacardic acid, natural inhibitors of histone acetyltransferases, inhibit Rhabdomyosarcoma growth and proliferation

CC BY Logo DOI

Rhabdomyosarcoma (RMS) is a malignant tumour of the soft tissues. There are two main histopathological types: alveolar and embryonal. RMS occurs mainly in childhood and is a result of the deregulation of growth and differentiation of muscle cell precursors. There is an increasing amount of data indicating that numerous epigenetic alterations within chromatin and histone proteins are involved in the pathogenesis of this malignancy. Histone acetylation is one of the most important epigenetic modifications that is catalysed by enzymes from the group of histone acetyltransferases (HAT). In this study, the impact of the natural histone acetyltransferase inhibitors (HATi)—garcinol (GAR) and anacardic acid (AA)—on the biology of RMS cells was evaluated through a series of in vitro tests measuring proliferation, viability, clonogenicity, cell cycle and apoptosis. Moreover, using oligonucleotide microarrays and real-time PCR, we identified several genes whose expression changed after GAR and AA treatment. The examined HATi significantly reduce the invasive phenotype of RMS cells by inhibiting the growth rate, viability and clonogenic abilities. What is more, these substances cause cell cycle arrest in the G2/M phase, induce apoptosis and affect the genetic expression of the endoplasmic reticulum stress sensors. GAR and AA may serve as promising potential anti-cancer drugs since they sensitize the RMS cells to chemotherapeutic treatment.

Tytuł
Garcinol and anacardic acid, natural inhibitors of histone acetyltransferases, inhibit Rhabdomyosarcoma growth and proliferation
Twórca
Tomasiak Patrycja ORCID 0000-0002-8147-6419
Słowa kluczowe
RMS; epigenetics; histone acetyltransferases; inhibitors
Słowa kluczowe
epigenetyka; acetylotransferazy histonowe; inhibitory
Współtwórca
Janisiak Joanna
Rogińska Dorota
Perużyńska Magdalena
Machaliński Bogusław
Tarnowski Maciej ORCID 0000-0002-3869-5077
Data
2023
Typ zasobu
artykuł
Identyfikator zasobu
DOI 10.3390/molecules28145292
Źródło
Molecules, 2023, vol. 2 iss. 14, [br.s.], 5292
Język
angielski
Prawa autorskie
CC BY CC BY
Dyscyplina naukowa
Nauki o kulturze fizycznej; Dziedzina nauk medycznych i nauk o zdrowiu
Kategorie
Publikacje pracowników US
Data udostępnienia8 lis 2023, 12:22:30
Data mod.8 lis 2023, 12:22:30
DostępPubliczny
Aktywnych wyświetleń0