Histone Deacetylase Inhibitor, Sodium Butyrate-Induced Metabolic Modulation in Platycodon grandiflorus Roots Enhances Anti-Melanogenic Properties

Int J Mol Sci. 2023 Jul 22;24(14):11804. doi: 10.3390/ijms241411804.

Abstract

While the status of histone acetylation is a critical regulator of chromatin's structure with a significant impact on plant physiology, our understanding of epigenetic regulation in the biosynthesis of active compounds in plants is limited. In this study, Platycodon grandiflorus was treated with sodium butyrate (NaB), a histone deacetylase inhibitor, to investigate the influence of histone acetylation on secondary metabolism. Its treatment with NaB increased the acetylation of histone H3 at lysine 9, 14, and 27 and enhanced the anti-melanogenic properties of P. grandiflorus roots. Through transcriptome and differentially expressed gene analyses, we found that NaB influenced the expression of genes that were involved in both primary and secondary metabolic pathways. In addition, NaB treatment caused the accumulation of polyphenolic compounds, including dihydroquercetin, gallic acid, and 2,4-dihydroxybenzoic acid. The NaB-induced transcriptional activation of genes in the phenylpropanoid biosynthetic pathway influenced the anti-melanogenic properties of P. grandiflorus roots. Overall, these findings suggest the potential of an epigenomic approach to enhance the medicinal qualities of medicinal plants.

Keywords: Platycodon grandiflorus; anti-melanogenic property; histone acetylation; histone deacetylase inhibitor; transcriptome.

MeSH terms

  • Acetylation
  • Butyric Acid / pharmacology
  • Epigenesis, Genetic
  • Histone Deacetylase Inhibitors / pharmacology
  • Histones* / metabolism
  • Melanins / metabolism
  • Platycodon* / metabolism

Substances

  • Butyric Acid
  • Histones
  • Histone Deacetylase Inhibitors
  • Melanins

Grants and funding

This research was supported by Chungbuk National University Korea National University Development Project (2022).