A novel mouse model of testicular granulosa cell tumors

Xin Fang1, Nan Ni1, Yang Gao1

  • 1Department of Veterinary Integrative Biosciences, Texas A&M University, College Station, TX, USA.

Abstract

Insights

Dysregulated transforming growth factor beta (TGFB) signaling overactivation in mice leads to testicular tumors resembling granulosa cell tumors (GrCTs). This study highlights TGFB signaling

Area of Science:

  • Reproductive biology and oncology
  • Molecular and cellular biology
  • Genetics and epigenetics

Background:

  • Transforming growth factor beta (TGFB) signaling is crucial in cellular processes.
  • Dysregulation of TGFB signaling is implicated in ovarian granulosa cell tumors (GrCTs).
  • The role of TGFB signaling in testicular pathobiology remains poorly understood.

Purpose of the Study:

  • To investigate the impact of dysregulated TGFB signaling on testicular development and tumor formation.
  • To characterize the molecular features of TGFB-induced testicular tumors.
  • To explore the relationship between TGFB signaling and beta-catenin (CTNNB1) in testicular GrCTs.

Main Methods:

  • Generation of mice with constitutive activation of TGFB receptor 1 (TGFBR1) in testes using Amhr2-Cre.
  • Histological and molecular analyses (H&E, PCR, IHC, IF, Western blotting) of testicular tissues from affected and control mice.
  • Examination of tumors for markers such as INHA, FOXO1, FOXL2, and CTNNB1 expression.

Main Results:

  • Constitutive TGFBR1 activation in testes induced tumors resembling testicular GrCTs.
  • Tumor formation was associated with altered cell proliferation, germ cell loss, and defective spermatogenesis.
  • Testicular tumors showed increased expression of CTNNB1 and positive staining for INHA, FOXO1, and FOXL2.

Conclusions:

  • Enhanced TGFB signaling has a tumorigenic function in the testis.
  • The findings suggest a common cellular origin for Sertoli and granulosa cells.
  • This mouse model provides a valuable tool for GrCT research and emphasizes the importance of balanced TGFB signaling in reproduction.

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