4.6 Article

FOXM1/DVL2/Snail axis drives metastasis and chemoresistance of colorectal cancer

Journal

AGING-US
Volume 12, Issue 23, Pages 24424-24440

Publisher

IMPACT JOURNALS LLC
DOI: 10.18632/aging.202300

Keywords

metastasis; chemoresistance; disheveled; colorectal cancer; FOXM1

Funding

  1. National Natural Science Foundation of China [81872451, 81301919]
  2. Chengdu Science and Technology Bureau [2018-YF05-00672-SN]
  3. Application and Basic Project of Science and Technology Department of Sichuan Province [2019YJ0370]
  4. Natural Science Foundation of Chengdu Medical College [CYTD18-04]
  5. Research Staring Foundation of Highlevel Talent Introduction of First Afflicted Hospital of Chengdu Medical College [CYFY-GQ19]
  6. Excellence Star Program of School of Bioscience and Technology of Chengdu Medical College [Sz201702]
  7. Scientific Research Foundation of Education Department of Sichuan Province [18ZB0152]

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Colorectal cancer (CRC) is the third most common type of cancer worldwide. Metastasis and chemoresistance are regarded as the two leading causes of treatment failure and high mortality in CRC. Forkhead Box M1 (FOXM1) has been involved in malignant behaviors of cancer. However, the role and mechanism of FOXM1 in simultaneously regulating metastasis and chemoresistance of CRC remain poorly understood. Here, we found that FOXM1 was overexpressed in oxaliplatin- and vincristine-resistant CRC cells (HCT-8/L-OHP and HCT-8/VCR) with enhanced metastatic potential, compared with HCT-8 cells. FOXM1 overexpression increased migration, invasion and drug-resistance to oxaliplatin and vincristine in HCT-8 cells, while FOXM1 knockdown using shFOXM1 impaired metastasis and drug-resistance in HCT-8/L-OHP and HCT-8/VCR cells. Moreover, FOXM1 upregulated Snail to trigger epithelial-mesenchymal transition-like molecular changes and multidrug-resistance protein P-gp expression, while silencing Snail inhibited FOXM1-induced metastasis and drug-resistance. We further identified that disheveled-2 (DVL2) was crucial for FOXM1-induced Snail expression, metastasis and chemoresistance. Furthermore, FOXM1 bound to DVL2, and enhanced nuclear translocation of DVL2 and DVL2-mediated transcriptional activity of Wnt/beta-catenin known to induce Snail expression. In conclusion, FOXM1/DVL2/Snail axis triggered aggressiveness of CRC. Blocking FOXM1/DVL2/Snail pathway simultaneously inhibited metastasis and chemoresistance in CRC cells, providing a new strategy for successful CRC treatment.

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