4.3 Article

A functional variant in HOXA11-AS, a novel long non-coding RNA, inhibits the oncogenic phenotype of epithelial ovarian cancer

Journal

ONCOTARGET
Volume 6, Issue 33, Pages 34745-34757

Publisher

IMPACT JOURNALS LLC
DOI: 10.18632/oncotarget.5784

Keywords

ovarian cancer; genetic susceptibility; HOX cluster; long non-coding RNAs; single nucleotide polymorphisms

Funding

  1. Genetic Associations and Mechanisms in Oncology (GAME-ON): a NCI Cancer Post-GWAS Initiative [U19-CA148112]
  2. NIH/NCI [R01-CA160455, R01-CA137041]
  3. Ovarian Cancer Research Fund [PPD/RPCI.07]
  4. Mayo Foundation
  5. Minnesota Ovarian Cancer Alliance
  6. Fred B. and Katherine B. Andersen Foundation
  7. National Cancer Institute [P30-CA15083]
  8. American Cancer Society [CRTG-00-196-01-CCE]
  9. Department of Defense [DAMD-17-98-1-8659]
  10. Celma Mastery Ovarian Cancer Foundation
  11. Canadian Cancer Society
  12. NIH [R01-CA63682, R01-CA63678]
  13. Advanced Cancer Detection Center Grant
  14. [R01-CA114343]
  15. [R01-CA114343-S1]
  16. [R01-CA122443]
  17. [P50-CA136393]
  18. [R01-CA76016]
  19. [DAMD17-02-1-0666]
  20. [R01-CA106414]
  21. [R01-CA54419]
  22. [P50-CA105009]
  23. [P30-CA76292]

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The homeobox A (HOXA) region of protein-coding genes impacts female reproductive system embryogenesis and ovarian carcinogenesis. The 5-prime end of HOXA includes three long non-coding RNAs (lncRNAs) (HOXA10-AS, HOXA11-AS, and HOTTIP) that are underexplored in epithelial ovarian cancer (EOC). We evaluated whether common genetic variants in these lncRNAs are associated with EOC risk and/or have functional roles in EOC development. Using genome-wide association study data from 1,201 serous EOC cases and 2,009 controls, an exonic variant within HOXA11-AS, rs17427875 (A>T), was marginally associated with reduced serous EOC risk (OR = 0.88 (95% CI: 0.78-1.01, p = 0.06). Functional studies of ectopic expression of HOXA11-AS minor allele T in EOC cells showed decreased survival, proliferation, migration, and invasion compared to common allele A expression. Additionally, stable expression of HOXA11-AS minor allele T reduced primary tumor growth in mouse xenograft models to a greater extent than common allele A. Furthermore, HOXA11-AS expression levels were significantly lower in human EOC tumors than normal ovarian tissues (p < 0.05), suggesting that HOXA11-AS has a tumor suppressor function in EOC which may be enhanced by the T allele. These findings demonstrate for the first time a role for HOXA11-AS in EOC with effects that could be modified by germline variants.

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