4.6 Article

LncRNA STXBP5-AS1 suppresses stem cell-like properties of pancreatic cancer by epigenetically inhibiting neighboring androglobin gene expression

Journal

CLINICAL EPIGENETICS
Volume 12, Issue 1, Pages -

Publisher

BMC
DOI: 10.1186/s13148-020-00961-y

Keywords

Long non-coding RNA; STXBP5-AS1; ADGB; Pancreatic cancer

Funding

  1. High-level hospital foster grants from Fujian Provincial Hospital [2019HSJJ13]
  2. Natural Science Foundation for Distinguished Young Scholars of Fujian Province [2018J06020]
  3. Education and Scientific Research Foundation of Fujian Province [2060402]
  4. Joint Funds for the innovation of science and technology, Fujian Province [2018Y9098, 2018Y9013]
  5. Fujian Provincial Health and Family Planning Research Medical Innovation Project [2019-cx-3]
  6. National Natural Science Foundation of China [81772560, 81702438]
  7. Youth Project Foundation of Fujian Provincial Health Commission [2018-1-10]
  8. Fujian Provincial Health and Family Planning Research Talents Cultivation Project [2017-ZQN-27]

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Previous studies suggest the tumor suppressor role of long non-coding RNA (lncRNA) STXBP5-AS1 in cervical and gastric cancer, but its expression pattern and functional mechanism are still elusive in pancreatic cancer (PC). Relative expression of STXBP5-AS1 in PC both in vivo and in vitro was analyzed by real-time PCR. IC50 of Gemcitabine was determined by the MTT assay. Cell proliferation in response to drug treatment was investigated by colony formation assay. Cell apoptosis was measured by both caspase-3 activity and Annexin V/PI staining. Cell invasion capacity was scored by the transwell assay in vitro, and lung metastasis was examined with the tail vein injection assay. Cell stemness was determined in vitro by sphere formation and marker profiling, respectively, and in vivo by limited dilution of xenograft tumor incidence. Subcellular localization of STXBP5-AS1 was analyzed with fractionation PCR. Association between STXBP5-AS1 and EZH2 was investigated by RNA-immunoprecipitation. The binding of EZH2 on ADGB promoter was analyzed by chromatin immunoprecipitation. The methylation was quantified by bisulfite sequencing. We showed downregulation of STXBP5-AS1 in PC associated with poor prognosis. Ectopic STXBP5-AS1 inhibited chemoresistance and metastasis of PC cells. In addition, STXBP5-AS1 compromised stemness of PC cells. Mechanistically, STXBP5-AS1 potently recruited EZH2 and epigenetically regulated neighboring ADGB transcription, which predominantly mediated the inhibitory effects of STXBP5-AS1 on stem cell-like properties of PC cells. Our study highlights the importance of the STXBP5-EZH2-ADGB axis in chemoresistance and stem cell-like properties of PC.

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