ADAR2 induces the differentiation of osteosarcoma cells by editing activity on IGFBP7: new implications for therapy

Michela Rossi1, Federica Scotto di Carlo2, Jacopo Di Gregorio3

  • 1Bone Physiopathology Research Unit, Translational Pediatric and Clinical Genetic Research Division, Bambino Gesù Children's Hospital, IRCCS, Rome, Italy.

Bone Research
|April 2, 2026
PubMed

Insights

Adenosine Deaminase Acting on RNA 2 (ADAR2) acts as a tumor suppressor in osteosarcoma. Overexpressing ADAR2 reduces tumor aggressiveness and promotes osteogenic differentiation by editing IGFBP7, suggesting a new therapeutic target.

Area of Science:

  • Oncology
  • Molecular Biology
  • RNA Biology

Background:

  • Osteosarcoma is a malignant bone tumor common in juveniles, known for recurrence and metastasis.
  • RNA editing is increasingly recognized for its role in cancer development and progression.

Purpose of the Study:

  • To investigate the role of the RNA editing enzyme Adenosine Deaminase Acting on RNA 2 (ADAR2) in osteosarcoma.
  • To explore ADAR2's potential as a therapeutic target for osteosarcoma.

Main Methods:

  • Assessed ADAR2 expression in osteosarcoma cells and correlated it with tumor aggressiveness.
  • Overexpressed ADAR2 in osteosarcoma cell lines and evaluated effects on tumoral properties and differentiation.
  • Conducted in vivo experiments using NSG mice.
  • Performed RNA sequencing (RNA-seq) to identify ADAR2 targets and analyzed the editing of Insulin-like Growth Factor Binding Protein 7 (IGFBP7).

Main Results:

  • ADAR2 expression increased with osteoblast differentiation and inversely correlated with osteosarcoma aggressiveness.
  • ADAR2 overexpression reduced osteosarcoma cell proliferation and induced osteogenic differentiation in vitro and in vivo.
  • ADAR2 editing of IGFBP7 was identified as a key mechanism, abolishing IGFBP7's proliferative effect and triggering terminal differentiation.

Conclusions:

  • ADAR2 functions as a tumor suppressor in osteosarcoma.
  • ADAR2-mediated editing of IGFBP7 is crucial for its tumor-suppressive effects.
  • ADAR2 represents a potential novel therapeutic target for osteosarcoma.