HPV51-associated Leiomyosarcoma: A Novel Class of TP53/RB1-Wildtype Tumor With Predilection for the Female Lower

Erik A Williams1,2, Meagan Montesion2, Vadim Lincoln1

  • 1Departments of Pathology and Dermatology, UCSF Dermatopathology Service, Helen Diller Family Cancer Center, University of California, San Francisco, CA.

Insights

Human papillomavirus (HPV) can drive leiomyosarcomas (LMSs) in a subset of tumors lacking TP53 or RB1 mutations. HPV51-positive LMS, primarily in the female reproductive tract, show distinct genomic alterations, suggesting HPV as an alternative tumorigenic mechanism.

Area of Science:

  • Oncology
  • Virology
  • Genomics

Background:

  • Inactivating mutations in tumor suppressor genes TP53 and RB1 are key drivers of leiomyosarcomas (LMSs).
  • High-risk human papillomavirus (HPV) oncoproteins E6 and E7 inactivate p53 and RB1, respectively, in other tumor types.
  • This study investigates HPV as a potential alternative driver in LMS lacking TP53/RB1 mutations.

Purpose of the Study:

  • To determine if HPV infection contributes to tumorigenesis in a subset of TP53/RB1-wildtype LMS.
  • To characterize the molecular and clinical features of HPV-associated LMS.

Main Methods:

  • Comprehensive genomic profiling (FoundationOneHeme) of 406 genes/transcripts on 2585 LMS tumor samples.
  • Identification of TP53/RB1-wildtype LMS cases (n=486).
  • Detection and genotyping of HPV sequences using next-generation sequencing and de novo assembly.

Main Results:

  • HPV sequences were identified in 18 of 486 (3.7%) TP53/RB1-wildtype LMS.
  • Eleven cases (0.4% of all LMS) were HPV51-positive, showing a striking absence of TP53/RB1 mutations (0% vs. 72% and 53% in HPV51-negative LMS).
  • HPV51-positive LMS were enriched for alterations in ATRX and TSC1 and predominantly occurred in the female gynecologic tract.

Conclusions:

  • High-risk HPV, particularly HPV51, can serve as an alternative tumorigenic mechanism in a distinct subset of LMS lacking TP53/RB1 mutations.
  • HPV51-associated LMS exhibit unique genomic profiles and a predilection for the female lower reproductive tract.
  • These findings highlight the importance of considering HPV in the etiology of specific LMS subtypes.

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