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Whole-genome analysis informs breast cancer response to aromatase inhibition.

Authors :
Ellis MJ
Ding L
Shen D
Luo J
Suman VJ
Wallis JW
Van Tine BA
Hoog J
Goiffon RJ
Goldstein TC
Ng S
Lin L
Crowder R
Snider J
Ballman K
Weber J
Chen K
Koboldt DC
Kandoth C
Schierding WS
McMichael JF
Miller CA
Lu C
Harris CC
McLellan MD
Wendl MC
DeSchryver K
Allred DC
Esserman L
Unzeitig G
Margenthaler J
Babiera GV
Marcom PK
Guenther JM
Leitch M
Hunt K
Olson J
Tao Y
Maher CA
Fulton LL
Fulton RS
Harrison M
Oberkfell B
Du F
Demeter R
Vickery TL
Elhammali A
Piwnica-Worms H
McDonald S
Watson M
Dooling DJ
Ota D
Chang LW
Bose R
Ley TJ
Piwnica-Worms D
Stuart JM
Wilson RK
Mardis ER
Source :
Nature [Nature] 2012 Jun 10; Vol. 486 (7403), pp. 353-60. Date of Electronic Publication: 2012 Jun 10.
Publication Year :
2012

Abstract

To correlate the variable clinical features of oestrogen-receptor-positive breast cancer with somatic alterations, we studied pretreatment tumour biopsies accrued from patients in two studies of neoadjuvant aromatase inhibitor therapy by massively parallel sequencing and analysis. Eighteen significantly mutated genes were identified, including five genes (RUNX1, CBFB, MYH9, MLL3 and SF3B1) previously linked to haematopoietic disorders. Mutant MAP3K1 was associated with luminal A status, low-grade histology and low proliferation rates, whereas mutant TP53 was associated with the opposite pattern. Moreover, mutant GATA3 correlated with suppression of proliferation upon aromatase inhibitor treatment. Pathway analysis demonstrated that mutations in MAP2K4, a MAP3K1 substrate, produced similar perturbations as MAP3K1 loss. Distinct phenotypes in oestrogen-receptor-positive breast cancer are associated with specific patterns of somatic mutations that map into cellular pathways linked to tumour biology, but most recurrent mutations are relatively infrequent. Prospective clinical trials based on these findings will require comprehensive genome sequencing.

Details

Language :
English
ISSN :
1476-4687
Volume :
486
Issue :
7403
Database :
MEDLINE
Journal :
Nature
Publication Type :
Academic Journal
Accession number :
22722193
Full Text :
https://doi.org/10.1038/nature11143