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
Frédérique Penault‐Llorca, Jorge S. Reis‐Filho, Magali Lacroix‐Triki, Laurent Arnould, Anne Vincent‐Salomon, Larry Norton, Charlotte K.Y. Ng, Rachael Natrajan, Xavier Sastre‐Garau, Salvatore Piscuoglio, Paul Cottu, Daniel Nava Rodrigues, Britta Weigelt, Felipe C. Geyer, Luciano G. Martelotto, Arnaud Gauthier, Huei‐Chi Wen, Raymond S. Lim, Catherine F. Cowell, Paul M Wilkerson, Patty T. Wai, Sílvio Eduardo Bromberg, S. Giard, Тумаков Николай Николаевич
2015-05-21

BRF2 amplificationDSN1 amplificationHER2 gene amplificationHER2 somatic mutationsintratumoral heterogeneity
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.
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.

Intratumoral components differing by HER2 status within a single cancer

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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Publication Date
2015-05-21
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Authors
Frédérique Penault‐Llorca
Jorge S. Reis‐Filho
Magali Lacroix‐Triki
Laurent Arnould
Anne Vincent‐Salomon
Larry Norton
Charlotte K.Y. Ng
Rachael Natrajan
Xavier Sastre‐Garau
Salvatore Piscuoglio
Paul Cottu
Daniel Nava Rodrigues
Britta Weigelt
Felipe C. Geyer
Luciano G. Martelotto
Arnaud Gauthier
Huei‐Chi Wen
Raymond S. Lim
Catherine F. Cowell
Paul M Wilkerson
Patty T. Wai
Sílvio Eduardo Bromberg
S. Giard
Тумаков Николай Николаевич
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