4.3 Article

Nesfatin-1/Nucleobindin-2 enhances cell migration, invasion, and epithelial-mesenchymal transition via LKB1/AMPK/TORC1/ZEB1 pathways in colon cancer

Journal

ONCOTARGET
Volume 7, Issue 21, Pages 31336-31349

Publisher

IMPACT JOURNALS LLC
DOI: 10.18632/oncotarget.9140

Keywords

Nucleobindin-2 (NUCB-2); nesfatin-1; colon cancer; EMT; metastasis

Funding

  1. Ministry of Science and Technology [MOST 104-2320-B-037-014-MY3, MOST 104-2314-B-037-053-MY4, MOST 103-2320-B-037-006-MY3]
  2. Kaohsiung Medical University Aim for the Top 500 Universities Grant [KMU-DT105010]
  3. Kaohsiung Medical University Aim for the Top Universities Grant [KMU-TP104C05]
  4. Kaohsiung Medical University Hospital Research Foundation [KMUH103-3M21]
  5. Taiwan Ministry of Health and Welfare [MOHW105-TDU-B-212-134007]
  6. Health and Welfare surcharge of tobacco products

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Recent studies indicate that a high level of nesfatin-1/Nucleobindin-2 (NUCB-2) is associated with poor outcome and promotes cell migration in breast cancer and prostate cancer. However, the role of NUCB2 is not well known in colon cancer. In this study, NUCB-2 level in colon cancer tissue was higher than that in non-tumor tissue. Suppression of NUCB-2 in a colon cancer cell line SW620 inhibited migration and invasion. The microarray analysis showed that low expression level of transcription factor ZEB1 in NUCB-2 knockdowned SW620 cells. In addition, expression level of epithelial-mesenchymal transition (EMT)-related molecules including N-cadherin, E-cadherin, beta-catenin, Slug and Twist was affected by NUCB-2 suppression and ZEB1-denepdent pathway. The signaling pathway liver kinase B1(LKB1)/AMP-dependent protein kinase (AMPK)/target of rapamycin complex (TORC) 1 was involved in regulation of NUCB-2-mediated metastasis and EMT properties. Suppression of NUCB-2 inhibited tumor nodules formation in a murine colon tumor model as well. In summary, nesfatin-1/NUCB-2 enhanced migration, invasion and EMT in colon cancer cells through LKB1/AMPK/TORC1/ZEB1 pathways in vitro and in vivo.

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