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HER2 Reactivation through Acquisition of the HER2 L755S Mutation as a Mechanism of Acquired Resistance to HER2-targeted Therapy in HER2(+) Breast Cancer

Articolo
Data di Pubblicazione:
2017
Abstract:
Purpose: Resistance to anti-HER2 therapies in HER2(+) breast cancer can occur through activation of alternative survival pathways or reactivation of the HER signaling network. Here we employed BT474 parental and treatment-resistant cell line models to investigate a mechanism by which HER2(+) breast cancer can reactivate the HER network under potent HER2-targeted therapies.Experimental Design: Resistant derivatives to lapatinib (L), trastuzumab (T), or the combination (LR/TR/LTR) were developed independently from two independent estrogen receptor ER(+)/HER2(+) BT474 cell lines (AZ/ATCC). Two derivatives resistant to the lapatinib-containing regimens (BT474/AZ-LR and BT474/ATCC-LTR lines) that showed HER2 reactivation at the time of resistance were subjected to massive parallel sequencing and compared with parental lines. Ectopic expression and mutant-specific siRNA interference were applied to analyze the mutation functionally. In vitro and in vivo experiments were performed to test alternative therapies for mutant HER2 inhibition.Results: Genomic analyses revealed that the HER2L755S mutation was the only common somatic mutation gained in the BT474/AZ-LR and BT474/ATCC-LTR lines. Ectopic expression of HER2L755S induced acquired lapatinib resistance in the BT474/AZ, SK-BR-3, and AU565 parental cell lines. HER2L755S-specific siRNA knockdown reversed the resistance in BT474/AZ-LR and BT474/ATCC-LTR lines. The HER1/2-irreversible inhibitors afatinib and neratinib substantially inhibited both resistant cell growth and the HER2 and downstream AKT/MAPK signaling driven by HER2L755S in vitro and in vivoConclusions: HER2 reactivation through acquisition of the HER2L755S mutation was identified as a mechanism of acquired resistance to lapatinib-containing HER2-targeted therapy in preclinical HER2-amplified breast cancer models, which can be overcome by irreversible HER1/2 inhibitors. Clin Cancer Res; 23(17); 5123-34. ©2017 AACR.
Tipologia CRIS:
1.1 Articolo in rivista
Elenco autori:
Xu, Xiaowei; De Angelis, Carmine; Burke Kathleen, A.; Nardone, Agostina; Hu, Huizhong; Qin, Lanfang; Veeraraghavan, Jamunarani; Sethunath, Vidyalakshmi; Heiser Laura, M.; Wang, Nicholas; Ng, KIU YAN CHARLOTTE; Chen Edward, S.; Renwick, Alexander; Wang, Tao; Nanda, Sarmistha; Shea, Martin; Mitchell, Tamika; Rajendran, Mahitha; Waters, Ian; Zabransky Daniel, J.; Scott Kenneth, L.; Gutierrez, Carolina; Nagi, Chandandeep; Geyer Felipe, C.; Chamness Gary, C.; Park Ben, H.; Shaw Chad, A.; Hilsenbeck Susan, G.; Rimawi Mothaffar, F.; Gray Joe, W.; Weigelt, Britta; Reis-Filho Jorge, S.; Osborne C., Kent; Schiff, Rachel
Autori di Ateneo:
Ng Kiu Yan Charlotte
Link alla scheda completa:
https://iris.hunimed.eu/handle/11699/79508
Pubblicato in:
CLINICAL CANCER RESEARCH
Journal
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