Cargando…

Multiple receptor tyrosine kinase activation related to ALK inhibitor resistance in lung cancer cells with ALK rearrangement

The activation of alternative receptor tyrosine kinases (RTKs) is known to mediate resistance to ALK inhibitors. However, the role of multiple RTK activation in resistance has yet to be determined. Two crizotinib-resistant (H3122/CR-1 and H3122/CR-2) and one TAE684-resistant (H2228/TR) cell lines we...

Descripción completa

Detalles Bibliográficos
Autores principales: Choi, Se Hoon, Kim, Dong Ha, Choi, Yun Jung, Kim, Seon Ye, Lee, Jung-Eun, Sung, Ki Jung, Kim, Woo Sung, Choi, Chang-Min, Rho, Jin Kyung, Lee, Jae Cheol
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Impact Journals LLC 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5601691/
https://www.ncbi.nlm.nih.gov/pubmed/28938595
http://dx.doi.org/10.18632/oncotarget.17680
_version_ 1783264434342330368
author Choi, Se Hoon
Kim, Dong Ha
Choi, Yun Jung
Kim, Seon Ye
Lee, Jung-Eun
Sung, Ki Jung
Kim, Woo Sung
Choi, Chang-Min
Rho, Jin Kyung
Lee, Jae Cheol
author_facet Choi, Se Hoon
Kim, Dong Ha
Choi, Yun Jung
Kim, Seon Ye
Lee, Jung-Eun
Sung, Ki Jung
Kim, Woo Sung
Choi, Chang-Min
Rho, Jin Kyung
Lee, Jae Cheol
author_sort Choi, Se Hoon
collection PubMed
description The activation of alternative receptor tyrosine kinases (RTKs) is known to mediate resistance to ALK inhibitors. However, the role of multiple RTK activation in resistance has yet to be determined. Two crizotinib-resistant (H3122/CR-1 and H3122/CR-2) and one TAE684-resistant (H2228/TR) cell lines were established. Multi-RTK arrays and Western blots were performed to detect the activation of bypass signals. There were no secondary mutations in the sequencing. EGFR and MET were activated in H3122/CR-1 cells whereas EGFR and IGF1R were activated in H3122/CR-2 cells. Concomitant activation of MET did not contribute to resistance as crizotinib completely suppressed both p-MET and p-ALK in H3122/CR-1 cells, whose survival was not affected by crizotinib. However, combined inhibition of EGFR and ALK was effective in controlling this resistant cell line. In H3122/CR-2 cells, the inhibition of both ALK and IGF1R could effectively suppress cell growth, whereas simultaneous inhibition of ALK and EGFR brought about a less-effective suppression, indicating that IGF1R activation is the main resistance mechanism. H2228/TR cells showed activation of the HER family (EGFR, ErbB2, and ErbB3). Afatinib, a pan-HER inhibitor, was more potent in suppressing resistant cells than gefitinib when combined with crizotinib, which suggests that coactivation of ErbB2 and ErbB3 also contributes to resistance. Interestingly, all three resistant cell lines responded well to AUY922, which can inhibit ALK, EGFR, and IGF1R activity. Activation of multiple RTKs can occur during acquired resistance to ALK inhibitors, in which case the dominant or significant bypass signal should be identified to provide a more appropriate combination therapy.
format Online
Article
Text
id pubmed-5601691
institution National Center for Biotechnology Information
language English
publishDate 2017
publisher Impact Journals LLC
record_format MEDLINE/PubMed
spelling pubmed-56016912017-09-21 Multiple receptor tyrosine kinase activation related to ALK inhibitor resistance in lung cancer cells with ALK rearrangement Choi, Se Hoon Kim, Dong Ha Choi, Yun Jung Kim, Seon Ye Lee, Jung-Eun Sung, Ki Jung Kim, Woo Sung Choi, Chang-Min Rho, Jin Kyung Lee, Jae Cheol Oncotarget Research Paper The activation of alternative receptor tyrosine kinases (RTKs) is known to mediate resistance to ALK inhibitors. However, the role of multiple RTK activation in resistance has yet to be determined. Two crizotinib-resistant (H3122/CR-1 and H3122/CR-2) and one TAE684-resistant (H2228/TR) cell lines were established. Multi-RTK arrays and Western blots were performed to detect the activation of bypass signals. There were no secondary mutations in the sequencing. EGFR and MET were activated in H3122/CR-1 cells whereas EGFR and IGF1R were activated in H3122/CR-2 cells. Concomitant activation of MET did not contribute to resistance as crizotinib completely suppressed both p-MET and p-ALK in H3122/CR-1 cells, whose survival was not affected by crizotinib. However, combined inhibition of EGFR and ALK was effective in controlling this resistant cell line. In H3122/CR-2 cells, the inhibition of both ALK and IGF1R could effectively suppress cell growth, whereas simultaneous inhibition of ALK and EGFR brought about a less-effective suppression, indicating that IGF1R activation is the main resistance mechanism. H2228/TR cells showed activation of the HER family (EGFR, ErbB2, and ErbB3). Afatinib, a pan-HER inhibitor, was more potent in suppressing resistant cells than gefitinib when combined with crizotinib, which suggests that coactivation of ErbB2 and ErbB3 also contributes to resistance. Interestingly, all three resistant cell lines responded well to AUY922, which can inhibit ALK, EGFR, and IGF1R activity. Activation of multiple RTKs can occur during acquired resistance to ALK inhibitors, in which case the dominant or significant bypass signal should be identified to provide a more appropriate combination therapy. Impact Journals LLC 2017-05-08 /pmc/articles/PMC5601691/ /pubmed/28938595 http://dx.doi.org/10.18632/oncotarget.17680 Text en Copyright: © 2017 Choi et al. http://creativecommons.org/licenses/by/3.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License 3.0 (http://creativecommons.org/licenses/by/3.0/) (CC BY 3.0), which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Paper
Choi, Se Hoon
Kim, Dong Ha
Choi, Yun Jung
Kim, Seon Ye
Lee, Jung-Eun
Sung, Ki Jung
Kim, Woo Sung
Choi, Chang-Min
Rho, Jin Kyung
Lee, Jae Cheol
Multiple receptor tyrosine kinase activation related to ALK inhibitor resistance in lung cancer cells with ALK rearrangement
title Multiple receptor tyrosine kinase activation related to ALK inhibitor resistance in lung cancer cells with ALK rearrangement
title_full Multiple receptor tyrosine kinase activation related to ALK inhibitor resistance in lung cancer cells with ALK rearrangement
title_fullStr Multiple receptor tyrosine kinase activation related to ALK inhibitor resistance in lung cancer cells with ALK rearrangement
title_full_unstemmed Multiple receptor tyrosine kinase activation related to ALK inhibitor resistance in lung cancer cells with ALK rearrangement
title_short Multiple receptor tyrosine kinase activation related to ALK inhibitor resistance in lung cancer cells with ALK rearrangement
title_sort multiple receptor tyrosine kinase activation related to alk inhibitor resistance in lung cancer cells with alk rearrangement
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5601691/
https://www.ncbi.nlm.nih.gov/pubmed/28938595
http://dx.doi.org/10.18632/oncotarget.17680
work_keys_str_mv AT choisehoon multiplereceptortyrosinekinaseactivationrelatedtoalkinhibitorresistanceinlungcancercellswithalkrearrangement
AT kimdongha multiplereceptortyrosinekinaseactivationrelatedtoalkinhibitorresistanceinlungcancercellswithalkrearrangement
AT choiyunjung multiplereceptortyrosinekinaseactivationrelatedtoalkinhibitorresistanceinlungcancercellswithalkrearrangement
AT kimseonye multiplereceptortyrosinekinaseactivationrelatedtoalkinhibitorresistanceinlungcancercellswithalkrearrangement
AT leejungeun multiplereceptortyrosinekinaseactivationrelatedtoalkinhibitorresistanceinlungcancercellswithalkrearrangement
AT sungkijung multiplereceptortyrosinekinaseactivationrelatedtoalkinhibitorresistanceinlungcancercellswithalkrearrangement
AT kimwoosung multiplereceptortyrosinekinaseactivationrelatedtoalkinhibitorresistanceinlungcancercellswithalkrearrangement
AT choichangmin multiplereceptortyrosinekinaseactivationrelatedtoalkinhibitorresistanceinlungcancercellswithalkrearrangement
AT rhojinkyung multiplereceptortyrosinekinaseactivationrelatedtoalkinhibitorresistanceinlungcancercellswithalkrearrangement
AT leejaecheol multiplereceptortyrosinekinaseactivationrelatedtoalkinhibitorresistanceinlungcancercellswithalkrearrangement