HIF induces human embryonic stem cell markers in cancer cells

Cancer Res. 2011 Jul 1;71(13):4640-52. doi: 10.1158/0008-5472.CAN-10-3320. Epub 2011 Jun 28.

Abstract

Low oxygen levels have been shown to promote self-renewal in many stem cells. In tumors, hypoxia is associated with aggressive disease course and poor clinical outcomes. Furthermore, many aggressive tumors have been shown to display gene expression signatures characteristic of human embryonic stem cells (hESC). We now tested whether hypoxia might be responsible for the hESC signature observed in aggressive tumors. We show that hypoxia, through hypoxia-inducible factor (HIF), can induce an hESC-like transcriptional program, including the induced pluripotent stem cell (iPSC) inducers, OCT4, NANOG, SOX2, KLF4, cMYC, and microRNA-302 in 11 cancer cell lines (from prostate, brain, kidney, cervix, lung, colon, liver, and breast tumors). Furthermore, nondegradable forms of HIFα, combined with the traditional iPSC inducers, are highly efficient in generating A549 iPSC-like colonies that have high tumorigenic capacity. To test potential correlation between iPSC inducers and HIF expression in primary tumors, we analyzed primary prostate tumors and found a significant correlation between NANOG-, OCT4-, and HIF1α-positive regions. Furthermore, NANOG and OCT4 expressions positively correlated with increased prostate tumor Gleason score. In primary glioma-derived CD133 negative cells, hypoxia was able to induce neurospheres and hESC markers. Together, these findings suggest that HIF targets may act as key inducers of a dynamic state of stemness in pathologic conditions.

Publication types

  • Research Support, N.I.H., Extramural
  • Research Support, Non-U.S. Gov't

MeSH terms

  • Biomarkers, Tumor / biosynthesis*
  • Biomarkers, Tumor / genetics
  • Cell Hypoxia / genetics
  • Cell Hypoxia / physiology
  • Cell Line, Tumor
  • Embryonic Stem Cells / metabolism*
  • Embryonic Stem Cells / physiology
  • Glioma / genetics
  • Glioma / metabolism
  • Glioma / pathology
  • HCT116 Cells
  • HT29 Cells
  • HeLa Cells
  • Homeodomain Proteins / biosynthesis
  • Homeodomain Proteins / genetics
  • Humans
  • Hypoxia-Inducible Factor 1 / biosynthesis
  • Hypoxia-Inducible Factor 1 / metabolism*
  • Kruppel-Like Factor 4
  • Male
  • MicroRNAs / biosynthesis
  • Nanog Homeobox Protein
  • Neoplastic Stem Cells / metabolism*
  • Neoplastic Stem Cells / physiology
  • Octamer Transcription Factor-3 / biosynthesis
  • Octamer Transcription Factor-3 / genetics
  • Prostatic Neoplasms / genetics
  • Prostatic Neoplasms / metabolism
  • Prostatic Neoplasms / pathology
  • RNA-Binding Proteins / biosynthesis
  • RNA-Binding Proteins / genetics
  • SOXB1 Transcription Factors / biosynthesis
  • SOXB1 Transcription Factors / genetics
  • Up-Regulation

Substances

  • Biomarkers, Tumor
  • Homeodomain Proteins
  • Hypoxia-Inducible Factor 1
  • KLF4 protein, human
  • Kruppel-Like Factor 4
  • Lin28A protein, human
  • MicroRNAs
  • NANOG protein, human
  • Nanog Homeobox Protein
  • Octamer Transcription Factor-3
  • POU5F1 protein, human
  • RNA-Binding Proteins
  • SOX2 protein, human
  • SOXB1 Transcription Factors