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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.
Background:
Dual-specificity tyrosine phosphorylation-regulated kinase 1A (DYRK1A) is a significant pathogenic factor in Down syndrome (DS), wherein DYRK1A is overexpressed by 1.5-fold because of trisomy of human chromosome 21. Thus, DYRK1A inhibition is considered a therapeutic strategy to modify the disease.
Purpose:
This study aims to identify a novel DYRK1A inhibitor and validate its therapeutic potential in DS-related pathological conditions.
Study Design:
In order to identify a novel DYRK1A inhibitor, we carried out two-step screening: a structure-based virtual screening of > 300,000 chemical library (first step) and cell-based nuclear factor of activated T-cells (NFAT)-response element (RE) promoter assay (second step). Primary hits were evaluated for their DYRK1A inhibitory activity using in vitro kinase assay and Tau phosphorylation in mammalian cells. Confirmed hit was further evaluated in pathological conditions including DYRK1A-overexpressing fibroblasts, flies, and mice.
Results:
We identified aristolactam BIII, a natural product derived from herbal plants, as a novel DYRK1A inhibitor. It potently inhibited the kinase activity of DYRK1A in vitro (IC50 = 9.67 nM) and effectively suppressed DYRK1A-mediated hyperphosphorylation of Tau in mammalian cells. Aristolactam BIII rescued the proliferative defects of DYRK1A transgenic (TG) mouse-derived fibroblasts and neurological and phenotypic defects of DS-like Drosophila models. Oral administration of aristolactam BIII acutely suppressed Tau hyperphosphorylation in the brain of DYRK1A TG mice. In the open field test, aristolactam BIII significantly ameliorated the exploratory behavioral deficit of DYRK1A TG mice.
Conclusion:
Our work revealed that aristolactam BIII as a novel DYRK1A inhibitor rescues DS phenotypes in cells and in vivo and suggested its therapeutic potential for the treatment of DYRK1A-related diseases.
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.
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