Citation

  • Authors: Furuya H. et al.
  • Year: 2022
  • Journal: Sci Rep 12 12186
  • Applications: in vitro / siRNA / INTERFERin
  • Cell types:
    1. Name: RT112
      Description: Human urinary bladder cells
    2. Name: UM-UC-3
      Description: human bladder cancer cells

Method

RT112 and UM-UC-3 cells were transfected with a pool of 3 synthesized commercial PAI-1 (sc-36179, Santa Cruz Biotechnology) (RT112KD-PAI1 and UM-UC-3KD-PAI1) or pool of 3 scrambled negative control siRNA (Scr, sc-37007, Santa Cruz Biotechnology) (RT112Scr and UM-UC-3Scr) in 6 well plates with a 100-pmol of siRNA and 9 μl of INTERFERin (Polyplus-transfection Inc., NY, USA) for 72 h according to manufacturer’s instruction.

Abstract

The extracellular activity of Plasminogen activator inhibitor-1 (PAI-1) is well described, acting as an inhibitor of tissue plasminogen activator and urokinase-type plasminogen activator, impacting fibrinolysis. Recent studies have revealed a pro-tumorigenic role of PAI-1 in human cancers, via the regulation of angiogenesis and tumor cell survival. In this study, immunohistochemical staining of 939 human bladder cancer specimens showed that PAI-1 expression levels correlated with tumor grade, tumor stage and overall survival. The typical subcellular localization of PAI-1 is cytoplasmic, but in approximately a quarter of the cases, PAI-1 was observed to be localized to both the tumor cell cytoplasm and the nucleus. To investigate the potential function of nuclear PAI-1 in tumor biology we applied chromatin immunoprecipitation (ChIP)-sequencing, gene expression profiling, and rapid immunoprecipitation mass spectrometry to a pair of bladder cancer cell lines. ChIP-sequencing revealed that PAI-1 can bind DNA at distal intergenic regions, suggesting a role as a transcriptional coregulator. The downregulation of PAI-1 in bladder cancer cell lines caused the upregulation of numerous genes, and the integration of ChIP-sequence and RNA-sequence data identified 57 candidate genes subject to PAI-1 regulation. Taken together, the data suggest that nuclear PAI-1 can influence gene expression programs and support malignancy.

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