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Expressed gene fusions as frequent drivers of poor outcomes in hormone receptor–positive breast cancer

  • Karina J. Matissek
  • , Maristela L. Onozato
  • , Sheng Sun
  • , Zongli Zheng
  • , Andrew Schultz
  • , Jesse Lee
  • , Kristofer Patel
  • , Piiha Lotta Jerevall
  • , Srinivas Vinod Saladi
  • , Allison Macleay
  • , Mehrad Tavallai
  • , Tanja Badovinac-Crnjevic
  • , Carlos Barrios
  • , Nuran Beşe
  • , Arlene Chan
  • , Yanin Chavarri-Guerra
  • , Marcio Debiasi
  • , Elif Demirdogen
  • , Unal Egeli
  • , Sahsuvar Gokgoz
  • Henry Gomez, Pedro Liedke, Ismet Tasdelen, Sahsine Tolunay, Gustavo Werutsky, Jessica St Louis, Nora Horick, Dianne M. Finkelstein, Long Phi Le, Aditya Bardia, Paul E. Goss, Dennis C. Sgroi, A. John Iafrate, Leif W. Ellisen
  • Massachusetts General Hospital Cancer Center
  • Harvard Medical School
  • Massachusetts General Hospital
  • Karolinska Institutet
  • University Hospital Centre Zagreb
  • Museu de Ciência e Tecnología - PUCRS
  • Acibadem Breast Research Institute
  • Mount Hospital
  • Instituto Nacional de Ciencias Médicas y Nutrición “Salvador Zubirán”
  • Pathology of Medical Faculty of Uludag University
  • Instituto Nacional de Enfermedades Neoplásicas Eduardo Cáceres Graziani

Producción científica: Contribución a una revistaArtículorevisión exhaustiva

39 Citas (Scopus)

Resumen

We sought to uncover genetic drivers of hormone receptor–positive (HR +) breast cancer, using a targeted next-generation sequencing approach for detecting expressed gene rearrangements without prior knowledge of the fusion partners. We identifi ed intergenic fusions involving driver genes, including PIK3CA, AKT3, RAF1, and ESR1, in 14% (24/173) of unselected patients with advanced HR + breast cancer. FISH confi rmed the corresponding chromosomal rearrangements in both primary and metastatic tumors. Expression of novel kinase fusions in nontransformed cells deregulates phosphoprotein signaling, cell proliferation, and survival in threedimensional culture, whereas expression in HR + breast cancer models modulates estrogen-dependent growth and confers hormonal therapy resistance in vitro and in vivo. Strikingly, shorter overall survival was observed in patients with rearrangement-positive versus rearrangement-negative tumors. Correspondingly, fusions were uncommon (<5%) among 300 patients presenting with primary HR + breast cancer. Collectively, our fi ndings identify expressed gene fusions as frequent and potentially actionable drivers in HR + breast cancer. SIGNIFICANCE: By using a powerful clinical molecular diagnostic assay, we identifi ed expressed intergenic fusions as frequent contributors to treatment resistance and poor survival in advanced HR + breast cancer. The prevalence and biological and prognostic signifi cance of these alterations suggests that their detection may alter clinical management and bring to light new therapeutic opportunities.

Idioma originalInglés
Páginas (desde-hasta)336-353
Número de páginas18
PublicaciónCancer Discovery
Volumen8
N.º3
DOI
EstadoPublicada - mar. 2018
Publicado de forma externa

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  1. ODS 3: Salud y bienestar
    ODS 3: Salud y bienestar

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