Molecular Correlates of Aggressive Behavior and Biological Progression in Testicular Sertoli Cell Tumors

Natalie M Rizzo1, Lynette M Sholl1, Chia-Sui Kao2

  • 1Department of Pathology, Brigham and Women's Hospital and Harvard Medical School, Boston, Massachusetts.

Insights

Sertoli cell tumors (SCTs) with aggressive features often involve CTNNB1 mutations. Metastatic SCTs show distinct molecular profiles, with half driven by TP53 and cell cycle pathway alterations, suggesting different progression routes.

Area of Science:

  • Oncology
  • Genetics
  • Molecular Biology

Background:

  • Sertoli cell tumors (SCTs) are rare sex cord-stromal tumors in males, with a small percentage exhibiting malignant behavior.
  • Molecular drivers of aggressive and metastatic SCT remain largely uncharacterized, hindering targeted therapies.

Purpose of the Study:

  • To investigate the genomic landscape of nonmetastasizing and metastasizing SCTs.
  • To identify molecular alterations associated with aggressive histopathologic features and metastatic potential in SCTs.

Main Methods:

  • Next-generation DNA sequencing was performed on 22 SCTs from 21 patients.
  • Tumors were classified as nonmetastasizing or metastasizing, with aggressive features defined by specific histopathologic criteria.

Main Results:

  • Gain-of-function CTNNB1 or inactivating APC variants were highly frequent (>90%) in nonmetastasizing SCTs, often linked to WNT pathway activation.
  • Metastatic SCTs showed a dichotomy: 50% had CTNNB1 variants, while the other 50% were CTNNB1-wild-type with alterations in TP53, MDM2, CDKN2A/B, and TERT pathways.
  • Copy number variants and loss of heterozygosity in CTNNB1 were observed in CTNNB1-mutant tumors with aggressive features or larger size (>1.5 cm).

Conclusions:

  • Approximately half of aggressive SCTs may arise from progression of CTNNB1-mutant SCTs.
  • The remaining aggressive SCTs are CTNNB1-wild-type and characterized by alterations in TP53, cell cycle, and telomere maintenance pathways.
  • These distinct molecular pathways in aggressive SCTs suggest different therapeutic strategies may be required.

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