Intra-tumor genetic heterogeneity and alternative driver genetic alterations in breast cancers with heterogeneous HER2 gene amplification
Первая русская революция и восстановление наместничества на Кавказе
2015-05-21
SCID: 54.1/pvuj85z9
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BRF2 amplificationDSN1 amplificationHER2 gene amplificationHER2 somatic mutationsintratumoral heterogeneity
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Abstract (AI)
BACKGROUND: HER2 is overexpressed and amplified in approximately 15% of invasive breast cancers, and is the molecular target and predictive marker of response to anti-HER2 agents. In a subset of these cases, heterogeneous distribution of HER2 gene amplification can be found, which creates clinically challenging scenarios. Currently, breast cancers with HER2 amplification/overexpression in just over 10% of cancer cells are considered HER2-positive for clinical purposes; however, it is unclear as to whether the HER2-negative components of such tumors would be driven by distinct genetic alterations. Here we sought to characterize the pathologic and genetic features of the HER2-positive and HER2-negative components of breast cancers with heterogeneous HER2 gene amplification and to define the repertoire of potential driver genetic alterations in the HER2-negative components of these cases. RESULTS: We separately analyzed the HER2-negative and HER2-positive components of 12 HER2 heterogeneous breast cancers using gene copy number profiling and massively parallel sequencing, and identified potential driver genetic alterations restricted to the HER2-negative cells in each case. In vitro experiments provided functional evidence to suggest that BRF2 and DSN1 overexpression/amplification, and the HER2 I767M mutation may be alterations that compensate for the lack of HER2 amplification in the HER2-negative components of HER2 heterogeneous breast cancers. CONCLUSIONS: Our results indicate that even driver genetic alterations, such as HER2 gene amplification, can be heterogeneously distributed within a cancer, and that the HER2-negative components are likely driven by genetic alterations not present in the HER2-positive components, including BRF2 and DSN1 amplification and HER2 somatic mutations.
Key Findings
1
Driver genetic alterations like HER2 amplification can be heterogeneously distributed within a single cancer.
2
HER2-negative tumor components are likely driven by distinct genetic alterations absent from HER2-positive components.
3
Identified alternative drivers in HER2-negative components include BRF2 and DSN1 amplifications and HER2 somatic mutations.
Research Object
Intratumoral components differing by HER2 status within a single cancer
Research Subject
Genetic heterogeneity of driver alterations across HER2-positive and HER2-negative tumor components, including amplification of HER2, BRF2, DSN1 and somatic HER2 mutations
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2015-05-21
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