4.5 Article

miR-1207-5p suppresses laryngeal squamous cell carcinoma progression by downregulating SKA3 and inhibiting epithelial-mesenchymal transition

期刊

MOLECULAR THERAPY-ONCOLYTICS
卷 22, 期 -, 页码 152-165

出版社

CELL PRESS
DOI: 10.1016/j.omto.2021.08.001

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资金

  1. National Natural Science Foundation of China [81872210, 81802948, 82073101]
  2. Excellent talent science and technology innovation project of Shanxi Province [201605D211029, 201705D211018, 201805D211007]
  3. Research Funds for China Central Government-guided Development of Local Science and Technology [2020-165-19]
  4. Shanxi Province Scientific and Technological Achievements Transformation Guidance Foundation [201804D131043]
  5. Shenzhen Key Laboratory Foundation [ZDSYS20200811143757022]
  6. Shanxi Province Science Foundation for Excellent Young Scholars [201901D211486]
  7. Applied Basic Research project of Shanxi province [201801D221421, 201901D211490]
  8. Youth Foundation of The First Hospital Affiliated with Shanxi Medical University [YQ1503]
  9. Youth Top Talent Program Fund of Shanxi Province
  10. Fund of Shanxi 1331 Project
  11. Key Laboratory of Cellular Physiology (Shanxi Medical University)
  12. Ministry of Education, China [KLMEC/SXMU-202008, KLMEC/SXMU-202009]

向作者/读者索取更多资源

MiR-1207-5p inhibits malignant progression of LSCC by downregulating SKA3 and preventing EMT. These findings provide new insights into the mechanism of LSCC progression, as well as new potential biomarkers and therapeutic targets for LSCC diagnosis and treatment.
Laryngeal squamous cell carcinoma (LSCC) is the second most common head and neck cancer. Previously, we discovered that miR-1207-5p was downregulated in LSCC. In this study, the clinical significance, function, and mechanism of miR-12075p in LSCC were investigated. Downregulation of miR-12075p was found to be strongly linked to the malignant progression of LSCC. Functional studies revealed that miR-1207-5p upregulation suppressed LSCC cell proliferation, invasion, migration, and xenograft tumor growth. Bioinformatics analysis revealed that miR-1207-5p target genes were involved in cell cycle regulation, proliferation, adhesion, and the phosphatidylinositol 3-kinase (PI3K)/Akt pathway. Mechanistic studies revealed that miR-1207-5p interacts directly with the 30 untranslated region of spindle and kinetochore associated complex subunit 3 (SKA3) and downregulates SKA3 expression. Furthermore, SKA3 was found to be overexpressed in LSCC, and its high expression was associated with tumor progression and a poor prognosis. Rescue experiments demonstrated that miR-12075p inhibited the malignant phenotypes of LSCC via SKA3. Furthermore, miR-1207-5p upregulation or knockdown of SKA3 inhibited the epithelial-mesenchymal transition (EMT). Collectively, miR-1207-5p inhibited LSCC malignant progression by downregulating SKA3 and preventing EMT. These findings provide new insights into the mechanism of LSCC progression, as well as new potential biomarkers and therapeutic targets for LSCC diagnosis and treatment.

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