Discovery of a novel NUAK1 inhibitor against pancreatic cancer
- Authors
- Seo, Myeong-Seong; Jung, Kyung Hee; Kim, Kewon; Lee, Ji Eun; Han, Beom Seok; Ko, Soyeon; KIM, JAE HO; Hong, Sungwoo; Lee, So Ha; Hong, Soon-Sun
- Issue Date
- 2022-08
- Publisher
- Elsevier Masson
- Citation
- Biomedicine and Pharmacotherapy, v.152
- Abstract
- The novel (nua) kinase family 1 (NUAK1) is an AMPK-related kinase and its expression is associated with tumor malignancy and poor prognosis in several types of cancer, suggesting its potential as a target for cancer therapy. Therefore, the development of NUAK1-targeting inhibitors could improve therapeutic outcomes in cancer. We synthesized KI-301670, a novel NUAK1 inhibitor, and assessed its anticancer effects and mechanism of action in pancreatic cancer. It effectively inhibited pancreatic cancer growth and proliferation, and induced cell cycle arrest, markedly G0/G1 arrest, by increasing the expression of p27 and decreasing expression of p-Rb and E2F1. Additionally, the apoptotic effect of KI-301670 was observed by an increase in cleaved PARP, TUNEL-positive cells, and annexin V cell population, as well as the release of cytochrome c via the loss of mitochondrial membrane potential. KI-301670 inhibited the migration and invasion of pancreatic cancer cells. Mechanistically, KI-301670 effectively inhibited the PI3K/AKT pathway in pancreatic cancer cells. Furthermore, it significantly attenuated tumor growth in a mouse xenograft tumor model. Our results demonstrate that a novel NUAK1 inhibitor, KI-301670, exerts anti-tumor effects by directly suppressing cancer cell growth by affecting the PI3K/ AKT pathway, suggesting that it could be a novel therapeutic candidate for pancreatic cancer treatment.
- Keywords
- EPITHELIAL-MESENCHYMAL TRANSITION; PI3K/AKT SIGNALING PATHWAY; ARK5; EXPRESSION; AMPK; METASTASIS; RESISTANCE; CELLS; CARCINOMA; INVASION; Apoptosis; NUAK1; KI-301670; Pancreatic cancer; PI3K; AKT pathway
- ISSN
- 0753-3322
- URI
- https://pubs.kist.re.kr/handle/201004/76655
- DOI
- 10.1016/j.biopha.2022.113241
- Appears in Collections:
- KIST Article > 2022
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