RARRES2 functions as a tumor suppressor by promoting β-catenin phosphorylation/degradation and inhibiting p38

Y Liu-Chittenden1, M Jain1, K Gaskins1

  • 1Endocrine Oncology Branch, National Cancer Institute, National Institutes of Health, Bethesda, MD, USA.

Oncogene
|January 24, 2017
PubMed

Insights

Retinoic acid receptor responder 2 (RARRES2) acts as a novel tumor suppressor in adrenocortical carcinoma (ACC). This gene inhibits cancer growth independently of the immune system by regulating Wnt/β-catenin signaling.

Area of Science:

  • Oncology
  • Molecular Biology
  • Cancer Genetics

Background:

  • Tumor suppressor genes and the immune system are crucial in cancer prevention.
  • Retinoic acid receptor responder 2 (RARRES2) is downregulated in many cancers.
  • Previous research suggested RARRES2 functions as an immune-dependent tumor suppressor via chemoattraction.

Purpose of the Study:

  • To investigate the role of RARRES2 in adrenocortical carcinoma (ACC).
  • To explore the mechanism of RARRES2 action in ACC, particularly its Wnt/β-catenin signaling pathway involvement.

Main Methods:

  • Assessed RARRES2 expression levels in ACC tissues versus normal/benign tissues.
  • Investigated the effect of RARRES2 overexpression on ACC cell proliferation, invasion, and tumorigenicity in vitro and in vivo.
  • Analyzed the impact of RARRES2 on Wnt/β-catenin and p38 MAPK signaling pathways.

Main Results:

  • RARRES2 expression is significantly downregulated in ACC due to CpG hypermethylation.
  • RARRES2 overexpression inhibited ACC cell proliferation, invasion, and tumorigenicity in vitro and tumor growth in immunodeficient mice.
  • RARRES2 suppressed Wnt/β-catenin activity by promoting β-catenin phosphorylation and degradation, and inhibited p38 MAPK phosphorylation.

Conclusions:

  • RARRES2 is identified as a novel tumor suppressor gene in ACC.
  • RARRES2 exerts its tumor-suppressive effects in ACC through an immune-independent mechanism.
  • The findings highlight RARRES2's role in regulating key cancer signaling pathways in ACC.

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