Literature DB >> 30111817

Epithelial-mesenchymal transition (EMT) beyond EGFR mutations per se is a common mechanism for acquired resistance to EGFR TKI.

Chien-Hui Weng1, Li-Yu Chen1, Yu-Chin Lin1,2, Jin-Yuan Shih3, Yun-Chieh Lin1, Ruo-Yu Tseng1, An-Chieh Chiu1, Yu-Hsuan Yeh1, Chi Liu1, Yi-Ting Lin1, Jim-Min Fang4, Ching-Chow Chen5.   

Abstract

Epidermal growth factor receptor (EGFR) tyrosine kinase inhibitor (TKI) is a major advance in treating NSCLC with EGFR-activating mutations. However, acquired resistance, due partially to secondary mutations limits their use. Here we report that NSCLC cells with acquired resistance to gefitinib or osimertinib (AZD9291) exhibit EMT features, with a decrease in E-cadherin, and increases in vimentin and stemness, without possessing any EGFR secondary mutations. Knockdown of E-cadherin in parental cells increased gefitinib resistance and stemness, while knockdown of vimentin in resistant cells resulted in opposite effects. Src activation and Hakai upregulation were found in gefitinib-resistant cells. Knockdown of Hakai elevated E-cadherin expression, attenuated stemness, and resensitized the cells to gefitinib. Clinical cancer specimens with acquired gefitinib resistance also showed a decrease in E-cadherin and an increase in Hakai expression. The dual HDAC and HMGR inhibitor JMF3086 inhibited the Src/Hakai and Hakai/E-cadherin interaction to reverse E-cadherin expression, and attenuated vimentin and stemness to restore gefitinib sensitivity. The EMT features of AZD9291-resistant H1975 cells were related to the upregulation of Zeb1. Both gefitinib and AZD9291 sensitivity was restored by JMF3086 through reversing EMT. Our study not only revealed a common mechanism of EMT in both gefitinib and AZD9291 resistance beyond EGFR mutations per se, but also provides a new strategy to overcome it.

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Year:  2018        PMID: 30111817     DOI: 10.1038/s41388-018-0454-2

Source DB:  PubMed          Journal:  Oncogene        ISSN: 0950-9232            Impact factor:   9.867


  1 in total

1.  IL-8 confers resistance to EGFR inhibitors by inducing stem cell properties in lung cancer.

Authors:  Yi-Nan Liu; Tzu-Hua Chang; Meng-Feng Tsai; Shang-Gin Wu; Tzu-Hsiu Tsai; Hsuan-Yu Chen; Sung-Liang Yu; James Chih-Hsin Yang; Jin-Yuan Shih
Journal:  Oncotarget       Date:  2015-04-30
  1 in total
  67 in total

1.  Targeting c-kit inhibits gefitinib resistant NSCLC cell growth and invasion through attenuations of stemness, EMT and acquired resistance.

Authors:  Yueling Zhou; Li Wang; Zhen Sun; Jie Zhang; Xiujie Wang
Journal:  Am J Cancer Res       Date:  2020-12-01       Impact factor: 6.166

Review 2.  Targeting Acquired and Intrinsic Resistance Mechanisms in Epidermal Growth Factor Receptor Mutant Non-Small-Cell Lung Cancer.

Authors:  Manan P Shah; Joel W Neal
Journal:  Drugs       Date:  2022-04-12       Impact factor: 9.546

Review 3.  Emerging role of tumor cell plasticity in modifying therapeutic response.

Authors:  Siyuan Qin; Jingwen Jiang; Yi Lu; Edouard C Nice; Canhua Huang; Jian Zhang; Weifeng He
Journal:  Signal Transduct Target Ther       Date:  2020-10-07

Review 4.  Strategies to overcome acquired resistance to EGFR TKI in the treatment of non-small cell lung cancer.

Authors:  J Gao; H-R Li; C Jin; J-H Jiang; J-Y Ding
Journal:  Clin Transl Oncol       Date:  2019-03-12       Impact factor: 3.405

5.  Targeting PAR2 Overcomes Gefitinib Resistance in Non-Small-Cell Lung Cancer Cells Through Inhibition of EGFR Transactivation.

Authors:  Yuhong Jiang; Xin Zhuo; Xiujuan Fu; Yue Wu; Canquan Mao
Journal:  Front Pharmacol       Date:  2021-04-22       Impact factor: 5.810

6.  Zinc-finger E-box-binding homeobox 1 (ZEB1) plays a crucial role in the maintenance of lung cancer stem cells resistant to gefitinib.

Authors:  Fariz Nurwidya; Fumiyuki Takahashi; Wira Winardi; Ken Tajima; Yoichiro Mitsuishi; Akiko Murakami; Isao Kobayashi; Takeshi Nara; Muneaki Hashimoto; Motoyasu Kato; Moulid Hidayat; Kentaro Suina; Daisuke Hayakawa; Tetsuhiko Asao; Ryo Ko; Takehito Shukuya; Toshifumi Yae; Naoko Shimada; Yasuko Yoshioka; Shinichi Sasaki; Kazuhisa Takahashi
Journal:  Thorac Cancer       Date:  2021-03-25       Impact factor: 3.500

7.  Targeting the IL-1β/EHD1/TUBB3 axis overcomes resistance to EGFR-TKI in NSCLC.

Authors:  Jian Huang; Xiuwen Lan; Ting Wang; Hailing Lu; Mengru Cao; Shi Yan; Yue Cui; Dexin Jia; Li Cai; Ying Xing
Journal:  Oncogene       Date:  2019-11-18       Impact factor: 9.867

Review 8.  Targeting the Fibroblast Growth Factor Receptor (FGFR) Family in Lung Cancer.

Authors:  Laura Pacini; Andrew D Jenks; Nadia Carvalho Lima; Paul H Huang
Journal:  Cells       Date:  2021-05-10       Impact factor: 6.600

9.  Reduced PHLPP Expression Leads to EGFR-TKI Resistance in Lung Cancer by Activating PI3K-AKT and MAPK-ERK Dual Signaling.

Authors:  Wei Wang; Xinhang Xia; Kuifei Chen; Meng Chen; Yinnan Meng; Dongqing Lv; Haihua Yang
Journal:  Front Oncol       Date:  2021-06-08       Impact factor: 6.244

10.  Gliosarcoma vs. glioblastoma: a retrospective case series using molecular profiling.

Authors:  Christopher Dardis; David Donner; Nader Sanai; Joanne Xiu; Sandeep Mittal; Sharon K Michelhaugh; Manjari Pandey; Santosh Kesari; Amy B Heimberger; Zoran Gatalica; Michael W Korn; Ashley L Sumrall; Surasak Phuphanich
Journal:  BMC Neurol       Date:  2021-06-23       Impact factor: 2.474

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