Epithelial-specific deletion of 11β-HSD2 hinders Apcmin/+ mouse tumorigenesis

Li Jiang1, Shilin Yang, Huiyong Yin

  • 1Departments of Medicine and Cancer Biology, S-3206, MCN, Vanderbilt University Medical Center, Nashville, TN 37232. ming-zhi.zhang@vanderbilt.edu.

Abstract

Insights

Inhibiting 11β-hydroxysteroid dehydrogenase type II (11β-HSD2) in intestinal epithelial cells reduces colorectal tumor growth. This approach increases active glucocorticoids, leading to cell-cycle arrest and mTOR pathway inhibition, offering a novel chemoprevention strategy.

Area of Science:

  • Oncology
  • Molecular Biology
  • Gastroenterology

Background:

  • Colorectal cancer (CRC) tumorigenesis is promoted by cyclooxygenase-2 (COX-2)-derived prostaglandin E2 (PGE2).
  • Glucocorticoids inhibit COX-2, but their action is limited by 11β-hydroxysteroid dehydrogenase type II (11β-HSD2) metabolism.
  • Increased 11β-HSD2 expression in CRC correlates with elevated COX-2 and promotes tumor development.

Purpose of the Study:

  • To investigate the role of epithelial 11β-HSD2 in colorectal tumorigenesis.
  • To determine if selective deletion of 11β-HSD2 in intestinal epithelia inhibits tumor growth.
  • To elucidate the molecular mechanisms underlying the effects of 11β-HSD2 inhibition on tumor progression.

Main Methods:

  • Generation of Vil-Cre-HSD2(-/-) Apc(min/+) mice with selective epithelial deletion of 11β-HSD2.
  • Analysis of tumor incidence, size, and expression of key proteins (11β-HSD2, COX-2, p53, p21, pRb, REDD1).
  • Assessment of mTOR signaling pathway activity and cell-cycle arrest markers.

Main Results:

  • Selective deletion of epithelial 11β-HSD2 significantly inhibited intestinal tumorigenesis in Apc(min/+) mice.
  • Reduced expression of 11β-HSD2 and COX-2 in adenoma epithelia, with intact stromal COX-2.
  • Increased p53, p21, and REDD1, decreased pRb, and inhibited mTOR signaling, indicating glucocorticoid-mediated G1-arrest.

Conclusions:

  • Epithelial 11β-HSD2 deficiency suppresses colorectal adenoma initiation and growth.
  • This suppression is mediated by increased intracellular active glucocorticoids, leading to COX-2 attenuation, cell-cycle arrest, and mTOR pathway inhibition.
  • Inhibition of 11β-HSD2 represents a potential novel strategy for colorectal cancer chemoprevention.