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Endocrine-Therapy-Resistant ESR1 Variants Revealed by Genomic Characterization of Breast-Cancer-Derived Xenografts

Cell Reports · 2013 · Vol. 4(6) · pp. 1116–1130
Shunqiang LiDong ShenJieya ShaoRobert J. CrowderWenbin LiuAleix PratXiaping HeShuying LiuJeremy HoogCharles LuLi DingObi L. GriffithChristopher A. MillerDave LarsonRobert S. FultonMichelle HarrisonTom MooneyJoshua F. McMichaelJingqin LuoTao YuRodrigo GonçalvesChristopher SchlosbergJeffrey HikenLaila SaiedCésar SánchezTherese GiuntoliCaroline BumbCrystal CooperRobert T. KitchensAustin LinChanpheng PhommalySherri R. DaviesJin ZhangMegha Shyam KavuriDonna McEachernYi DongX. CynthiaTimothy PluardMichael NaughtonRon BoseRama SureshR. McDowellLoren MichelRebecca AftWilliam E. GillandersKatherine DeSchryverRichard K. WilsonShaomeng WangGordon B. MillsAna M. González-AnguloJohn R. EdwardsChristopher A. MaherCharles M. PerouElaine R. MardisMatthew J. Ellis

Abstract

To characterize patient-derived xenografts (PDXs) for functional studies, we made whole-genome comparisons with originating breast cancers representative of the major intrinsic subtypes. Structural and copy number aberrations were found to be retained with high fidelity. However, at the single-nucleotide level, variable numbers of PDX-specific somatic events were documented, although they were only rarely functionally significant. Variant allele frequencies were often preserved in the PDXs, demonstrating that clonal representation can be transplantable. Estrogen-receptor-positive PDXs were associated with ESR1 ligand-binding-domain mutations, gene amplification, or an ESR1/YAP1 translocation. These events produced different endocrine-therapy-response phenotypes in human, cell line, and PDX endocrine-response studies. Hence, deeply sequenced PDX models are an important resource for the search for genome-forward treatment options and capture endocrine-drug-resistance etiologies that are not observed in standard cell lines. The originating tumor genome provides a benchmark for assessing genetic drift and clonal representation after transplantation.

CRISPR and Genetic EngineeringCancer Genomics and DiagnosticsBRCA gene mutations in cancerBiologyCopy-number variationEstrogen receptor alphaCancer researchGeneticsBreast cancerEstrogen receptorTransplantationFulvestrantGene duplication

MeSH terms

YAP-Signaling ProteinsAllelesAnimalsBreast NeoplasmsEstradiolFemaleGene AmplificationHumansNeoplasm ProteinsNeoplasm StagingPhosphoproteinsRNA, NeoplasmTranscription FactorsTranslocation, GeneticPoint Mutation

Funding

  • Breast Cancer Research Foundation
  • Susan G. Komen
  • Georgia Clinical and Translational Science Alliance
  • National Cancer Institute
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