4.3 Article

Constitutively active transforming growth factor β receptor 1 in the mouse ovary promotes tumorigenesis

期刊

ONCOTARGET
卷 7, 期 27, 页码 40904-40918

出版社

IMPACT JOURNALS LLC
DOI: 10.18632/oncotarget.10149

关键词

TGF beta; TGFBR1; tumor; ovary; mouse model

资金

  1. Eunice Kennedy Shriver National Institute of Child Health & Human Development [R03HD082416]
  2. Texas A&M University New Faculty Start-up Funds
  3. INSERM Avenir Program
  4. Cancer Research UK core grant
  5. ERC grant ColonCan [GA 311301]
  6. Eunice Kennedy Shriver NICHD/NIH (NCTRI) Grant [P50-HD28934]
  7. Versus Arthritis
  8. Cancer Research UK [21139] Funding Source: researchfish

向作者/读者索取更多资源

Despite the well-established tumor suppressive role of TGF beta proteins, depletion of key TGF beta signaling components in the mouse ovary does not induce a growth advantage. To define the role of TGF beta signaling in ovarian tumorigenesis, we created a mouse model expressing a constitutively active TGF beta receptor 1 (TGFBR1) in ovarian somatic cells using conditional gain-of-function approach. Remarkably, these mice developed ovarian sex cord-stromal tumors with complete penetrance, leading to reproductive failure and mortality. The tumors expressed multiple granulosa cell markers and caused elevated serum inhibin and estradiol levels, reminiscent of granulosa cell tumors. Consistent with the tumorigenic effect, overactivation of TGFBR1 altered tumor microenvironment by promoting angiogenesis and enhanced ovarian cell proliferation, accompanied by impaired cell differentiation and dysregulated expression of critical genes in ovarian function. By further exploiting complementary genetic models, we substantiated our finding that constitutively active TGFBR1 is a potent oncogenic switch in mouse granulosa cells. In summary, overactivation of TGFBR1 drives gonadal tumor development. The TGFBR1 constitutively active mouse model phenocopies a number of morphological, hormonal, and molecular features of human granulosa cell tumors and are potentially valuable for preclinical testing of targeted therapies to treat granulosa cell tumors, a class of poorly defined ovarian malignancies.

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