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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.
Abstract:
Inactivating mutations in tumor suppressor genes TP53 and RB1 are considered central drivers in leiomyosarcomas (LMSs). In high-risk human papillomavirus (HPV)-related tumors, a similar functional outcome is achieved through oncoproteins E6 and E7, which inactivate the p53 and RB1 proteins, respectively. Here, we hypothesized that HPV infection could provide an alternative mechanism for tumorigenesis in a subset of TP53/RB1-wildtype LMS. We evaluated tumor samples from 2585 consecutive unique patients carrying a diagnosis of gynecologic or soft tissue LMS. Tumor DNA and available RNA were analyzed by hybrid-capture-based next-generation sequencing/comprehensive genomic profiling of 406 genes and transcripts (FoundationOneHeme). Of the initial 2585 cases, we excluded 16 based on the presence of molecular alterations that are considered defining for sarcomas other than LMS. In the remaining 2569 cases, we searched for LMS that were TP53/RB1-wildtype (n=486 of 2569; 18.9%). We also searched LMS tumors for HPV sequences that we then classified into genotypes by de novo assembly of nonhuman sequencing reads followed by alignment to the RefSeq database. Among TP53/RB1-wildtype LMS, we identified 18 unique cases harboring HPV sequences. Surprisingly, most (n=11) were HPV51-positive, and these 11 represented all HPV51-positive tumors in our entire LMS database (n=11 of 2569; 0.4%). The absence of genomic alterations in TP53 or RB1 in HPV51-positive LMS represented a marked difference from HPV51-negative LMS (n=2558; 0% vs. 72% [P<0.00001], 0% vs. 53% [P=0.0002]). In addition, compared with HPV51-negative LMS, HPV51-positive LMS were significantly enriched for genomic alterations in ATRX (55% vs. 24%, P=0.027) and TSC1 (18% vs. 0.6%, P=0.0047). All HPV51-positive LMS were in women; median age was 54 years at surgery (range: 23 to 74 y). All known primary sites were from the gynecologic tract or adjacent anogenital area, including 5 cases of vaginal primary site. Histology was heterogeneous, with evaluable cases showing predominant epithelioid (n=5) and spindle (n=5) morphology. In situ hybridization confirmed the presence of high-risk HPV E6/E7 mRNA in tumor cells in three of three evaluable cases harboring HPV51 genomic sequences. Overall, in our pan-LMS analysis, HPV reads were identified in a subset of TP53/RB1-wildtype LMS. For all HPV51-associated LMS, the striking absence of any detectable TP53 or RB1 mutations and predilection for the female lower reproductive tract supports our hypothesis that high-risk HPV can be an alternative tumorigenic mechanism in this distinct class of LMS.
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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