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Cited 14 time in webofscience Cited 0 time in scopus
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Hyperactivation of TORC1 Drives Resistance to the Pan-HER Tyrosine Kinase Inhibitor Neratinib in HER2-Mutant Cancers

Authors
Sudhan, Dhivya R.Guerrero-Zotano, AngelWon, HelenEricsson, Paula GonzalezServetto, AlbertoHuerta-Rosario, MarielaYe, DanLee, Kyung minFormisano, LuigiGuo, YanLiu, QiKinch, Lisa N.Brewer, Monica RedDugger, TeresaKoch, JamesWick, Michael J.Cutler, Richard E., Jr.Lalani, Alshad S.Bryce, RichardAuerbach, AlanHanker, Ariella B.Arteaga, Carlos L.
Issue Date
Feb-2020
Publisher
CELL PRESS
Keywords
drug resistance; HER2 mutations; neratinib; precision oncology; TORC1
Citation
CANCER CELL, v.37, no.2, pp.183 - 199
Indexed
SCIE
SCOPUS
Journal Title
CANCER CELL
Volume
37
Number
2
Start Page
183
End Page
199
URI
https://scholarworks.bwise.kr/hanyang/handle/2021.sw.hanyang/146163
DOI
10.1016/j.ccell.2019.12.013
ISSN
1535-6108
Abstract
We developed neratinib-resistant HER2-mutant cancer cells by gradual dose escalation. RNA sequencing identified TORC1 signaling as an actionable mechanism of drug resistance. Primary and acquired neratinib resistance in HER2-mutant breast cancer patient-derived xenografts (PDXs) was also associated with TORC1 hyperactivity. Genetic suppression of RAPTOR or RHEB ablated P-S6 and restored sensitivity to the tyrosine kinase inhibitor. The combination of the TORC1 inhibitor everolimus and neratinib potently arrested the growth of neratinib-resistant xenografts and organoids established from neratinib-resistant PDXs. RNA and whole-exome sequencing revealed RAS-mediated TORC1 activation in a subset of neratinib-resistant models. DNA sequencing of HER2-mutant tumors clinically refractory to neratinib, as well as circulating tumor DNA profiling of patients who progressed on neratinib, showed enrichment of genomic alterations that converge to activate the mTOR pathway.
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