Biomedicine & Pharmacotherapy (May 2020)

Dysregulated NF-κB signal promotes the hub gene PCLAF expression to facilitate nasopharyngeal carcinoma proliferation and metastasis

  • FeiFei Ma,
  • Cheng Zhi,
  • Minling Wang,
  • Tao Li,
  • Shahzad Akbar Khan,
  • Zhaoen Ma,
  • Zhiliang Jing,
  • Chen Bo,
  • Qiang Zhou,
  • Shaomei Xia,
  • Shiwen Huang,
  • Sicong Huang,
  • Zhiquan Zhang,
  • Hongyun Jia,
  • Xiaogang Cui,
  • Mingze Yao,
  • Tianxing Ji

Journal volume & issue
Vol. 125
p. 109905

Abstract

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Background: Nasopharyngeal carcinoma (NPC) is common in Southern China. The molecular mechanism underlying NPC genesis and progression has been comprehensively investigated, but the key gene (s) or pathway (s) pertaining to NPC are unidentified. Methods: We explored some key genes and pathways involved in NPC through using meta-analysis of deposited expression of microarray data of NPC. The expression of proliferating cell nuclear antigen clamp associated factor (PCLAF) was determined by real-time PCR and western blots. CCK-8 assay, colony formation assay, transwell migration assay, cell wound healing assay, cell cycle analysis and cell apoptosis were carried out to assess biological behaviors caused by downregulation and overexpression of PCLAF in vitro. CHIP was utilized to determine the direct upstream regulatory transcription factors of PCLAF. Results: PCLAF was the key gene of NPC, which was significantly up-regulated in NPC cell line compared to the normal nasopharyngeal cell line. Additionally, in vitro assay has demonstrated the down-regulation and overexpression of PCLAF, resulted in significantly suppressed and enhanced NPC proliferation, metastasis and invasion respectively. Furthermore, the up-regulation of PCLAF in NPC is induced by direct binding of dysregulated NF-κB p50/RelB complex to the promoter of PCLAF. Conclusion: Our results offer a strategy for re-using the deposited data to find the key genes and pathways involved in pathogenesis of cancer. Our study has provided evidence of supporting the role of PCLAF in NPC genesis and progression.

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