Aristolactam BIII, a naturally derived DYRK1A inhibitor, rescues Down syndrome-related phenotypes

Miri Choi1, Ae-Kyeong Kim2, Youngwook Ham3

  • 1Natural Medicine Research Center, Korea Research Institute of Bioscience and Biotechnology (KRIBB), 30 Yeongudanji-ro, Ochang-eup, Cheongwon-gu, Cheongju-si, Chungbuk 28116, Republic of Korea; College of Pharmacy, Chungbuk National University, 30-1 Yeonje-ri, Osong-eup, Heungduk-gu, Cheongju-si, Chungbuk 28644, Republic of Korea.

Abstract

Insights

Aristolactam BIII, a natural compound, effectively inhibits Dual-specificity tyrosine phosphorylation-regulated kinase 1A (DYRK1A). This novel inhibitor shows therapeutic potential by rescuing Down syndrome (DS) phenotypes in cellular and animal models.

Area of Science:

  • Biochemistry
  • Genetics
  • Pharmacology

Background:

  • Dual-specificity tyrosine phosphorylation-regulated kinase 1A (DYRK1A) is a key factor in Down syndrome (DS) pathogenesis due to its 1.5-fold overexpression.
  • DYRK1A inhibition is a promising therapeutic strategy for DS.

Purpose of the Study:

  • To identify a novel DYRK1A inhibitor.
  • To validate its therapeutic potential in DS-related pathological conditions.

Main Methods:

  • Structure-based virtual screening of over 300,000 compounds.
  • Cell-based assays for NFAT-RE promoter activity and DYRK1A inhibition.
  • In vitro kinase assays, Tau phosphorylation studies, and evaluation in DS-like mouse and fly models.

Main Results:

  • Aristolactam BIII identified as a potent DYRK1A inhibitor (IC50 = 9.67 nM).
  • Suppressed DYRK1A-mediated Tau hyperphosphorylation in cells and mouse brains.
  • Rescued proliferative defects in fibroblasts and neurological/phenotypic defects in Drosophila models.
  • Ameliorated exploratory behavior deficits in DYRK1A transgenic mice.

Conclusions:

  • Aristolactam BIII is a novel DYRK1A inhibitor with therapeutic potential for DS.
  • Demonstrated efficacy in rescuing DS phenotypes across cellular and in vivo models.
  • Suggests aristolactam BIII as a candidate for treating DYRK1A-related diseases.