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Chromoanasynthesis is a common mechanism that leads to ERBB2 amplifications in a cohort of early stage HER2+ breast cancer samples

Authors :
George Vasmatzis
Xue Wang
James B. Smadbeck
Stephen J. Murphy
Katherine B. Geiersbach
Sarah H. Johnson
Athanasios G. Gaitatzes
Yan W. Asmann
Farhad Kosari
Mitesh J. Borad
Daniel J. Serie
Sarah A. McLaughlin
Jennifer M. Kachergus
Brian M. Necela
E. Aubrey Thompson
Source :
BMC Cancer, Vol 18, Iss 1, Pp 1-9 (2018)
Publication Year :
2018
Publisher :
BMC, 2018.

Abstract

Abstract Background HER2 positive (HER2+) breast cancers involve chromosomal structural alterations that act as oncogenic driver events. Methods We interrogated the genomic structure of 18 clinically-defined HER2+ breast tumors through integrated analysis of whole genome and transcriptome sequencing, coupled with clinical information. Results ERBB2 overexpression in 15 of these tumors was associated with ERBB2 amplification due to chromoanasynthesis with six of them containing single events and the other nine exhibiting multiple events. Two of the more complex cases had adverse clinical outcomes. Chromosomes 8 was commonly involved in the same chromoanasynthesis with 17. In ten cases where chromosome 8 was involved we observed NRG1 fusions (two cases), NRG1 amplification (one case), FGFR1 amplification and ADAM32 or ADAM5 fusions. ERBB3 over-expression was associated with NRG1 fusions and EGFR and ERBB3 expressions were anti-correlated. Of the remaining three cases, one had a small duplication fully encompassing ERBB2 and was accompanied with a pathogenic mutation. Conclusion Chromoanasynthesis involving chromosome 17 can lead to ERBB2 amplifications in HER2+ breast cancer. However, additional large genomic alterations contribute to a high level of genomic complexity, generating the hypothesis that worse outcome could be associated with multiple chromoanasynthetic events.

Details

Language :
English
ISSN :
14712407
Volume :
18
Issue :
1
Database :
Directory of Open Access Journals
Journal :
BMC Cancer
Publication Type :
Academic Journal
Accession number :
edsdoj.618e072a1e314c1bbe156e6d29213b34
Document Type :
article
Full Text :
https://doi.org/10.1186/s12885-018-4594-0