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Nuclear FGFR1 Regulates Gene Transcription and Promotes Antiestrogen Resistance in ER(+) Breast Cancer

PURPOSE: FGFR1 overexpression has been associated with endocrine resistance in ER(+) breast cancer. We found FGFR1 localized in the nucleus of breast cancer cells in primary tumors resistant to estrogen suppression. We investigated a role of nuclear FGFR1 on gene transcription and antiestrogen resis...

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Autores principales: Servetto, Alberto, Kollipara, Rahul, Formisano, Luigi, Lin, Chang-Ching, Lee, Kyung-Min, Sudhan, Dhivya R., Gonzalez-Ericsson, Paula I., Chatterjee, Sumanta, Guerrero-Zotano, Angel, Mendiratta, Saurabh, Akamatsu, Hiroaki, James, Nicholas, Bianco, Roberto, Hanker, Ariella B., Kittler, Ralf, Arteaga, Carlos L.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Association for Cancer Research 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8338892/
https://www.ncbi.nlm.nih.gov/pubmed/34011560
http://dx.doi.org/10.1158/1078-0432.CCR-20-3905
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author Servetto, Alberto
Kollipara, Rahul
Formisano, Luigi
Lin, Chang-Ching
Lee, Kyung-Min
Sudhan, Dhivya R.
Gonzalez-Ericsson, Paula I.
Chatterjee, Sumanta
Guerrero-Zotano, Angel
Mendiratta, Saurabh
Akamatsu, Hiroaki
James, Nicholas
Bianco, Roberto
Hanker, Ariella B.
Kittler, Ralf
Arteaga, Carlos L.
author_facet Servetto, Alberto
Kollipara, Rahul
Formisano, Luigi
Lin, Chang-Ching
Lee, Kyung-Min
Sudhan, Dhivya R.
Gonzalez-Ericsson, Paula I.
Chatterjee, Sumanta
Guerrero-Zotano, Angel
Mendiratta, Saurabh
Akamatsu, Hiroaki
James, Nicholas
Bianco, Roberto
Hanker, Ariella B.
Kittler, Ralf
Arteaga, Carlos L.
author_sort Servetto, Alberto
collection PubMed
description PURPOSE: FGFR1 overexpression has been associated with endocrine resistance in ER(+) breast cancer. We found FGFR1 localized in the nucleus of breast cancer cells in primary tumors resistant to estrogen suppression. We investigated a role of nuclear FGFR1 on gene transcription and antiestrogen resistance. EXPERIMENTAL DESIGN: Tumors from patients treated with letrozole were subjected to Ki67 and FGFR1 IHC. MCF7 cells were transduced with FGFR1(SP-)(NLS) to promote nuclear FGFR1 overexpression. FGFR1 genomic activity in ER(+)/FGFR1-amplified breast cancer cells ± FOXA1 siRNA or ± the FGFR tyrosine kinase inhibitor (TKI) erdafitinib was examined by chromatin immunoprecipitation sequencing (ChIP-seq) and RNA sequencing (RNA-seq). The nuclear and chromatin-bound FGFR1 interactome was investigated by mass spectrometry (MS). RESULTS: High nuclear FGFR1 expression in ER(+) primary tumors positively correlated with post-letrozole Ki67 values. Nuclear FGFR1 overexpression influenced gene transcription and promoted resistance to estrogen suppression and to fulvestrant in vivo. A gene expression signature induced by nuclear FGFR1 correlated with shorter survival in the METABRIC cohort of patients treated with antiestrogens. ChIP-Seq revealed FGFR1 occupancy at transcription start sites, overlapping with active transcription histone marks. MS analysis of the nuclear FGFR1 interactome identified phosphorylated RNA-Polymerase II and FOXA1, with FOXA1 RNAi impairing FGFR1 recruitment to chromatin. Treatment with erdafitinib did not impair nuclear FGFR1 translocation and genomic activity. CONCLUSIONS: These data suggest nuclear FGFR1 contributes to endocrine resistance by modulating gene transcription in ER(+) breast cancer. Nuclear FGFR1 activity was unaffected by FGFR TKIs, thus supporting the development of treatment strategies to inhibit nuclear FGFR1 in ER+/FGFR1 overexpressing breast cancer.
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spelling pubmed-83388922021-08-05 Nuclear FGFR1 Regulates Gene Transcription and Promotes Antiestrogen Resistance in ER(+) Breast Cancer Servetto, Alberto Kollipara, Rahul Formisano, Luigi Lin, Chang-Ching Lee, Kyung-Min Sudhan, Dhivya R. Gonzalez-Ericsson, Paula I. Chatterjee, Sumanta Guerrero-Zotano, Angel Mendiratta, Saurabh Akamatsu, Hiroaki James, Nicholas Bianco, Roberto Hanker, Ariella B. Kittler, Ralf Arteaga, Carlos L. Clin Cancer Res Translational Cancer Mechanisms and Therapy PURPOSE: FGFR1 overexpression has been associated with endocrine resistance in ER(+) breast cancer. We found FGFR1 localized in the nucleus of breast cancer cells in primary tumors resistant to estrogen suppression. We investigated a role of nuclear FGFR1 on gene transcription and antiestrogen resistance. EXPERIMENTAL DESIGN: Tumors from patients treated with letrozole were subjected to Ki67 and FGFR1 IHC. MCF7 cells were transduced with FGFR1(SP-)(NLS) to promote nuclear FGFR1 overexpression. FGFR1 genomic activity in ER(+)/FGFR1-amplified breast cancer cells ± FOXA1 siRNA or ± the FGFR tyrosine kinase inhibitor (TKI) erdafitinib was examined by chromatin immunoprecipitation sequencing (ChIP-seq) and RNA sequencing (RNA-seq). The nuclear and chromatin-bound FGFR1 interactome was investigated by mass spectrometry (MS). RESULTS: High nuclear FGFR1 expression in ER(+) primary tumors positively correlated with post-letrozole Ki67 values. Nuclear FGFR1 overexpression influenced gene transcription and promoted resistance to estrogen suppression and to fulvestrant in vivo. A gene expression signature induced by nuclear FGFR1 correlated with shorter survival in the METABRIC cohort of patients treated with antiestrogens. ChIP-Seq revealed FGFR1 occupancy at transcription start sites, overlapping with active transcription histone marks. MS analysis of the nuclear FGFR1 interactome identified phosphorylated RNA-Polymerase II and FOXA1, with FOXA1 RNAi impairing FGFR1 recruitment to chromatin. Treatment with erdafitinib did not impair nuclear FGFR1 translocation and genomic activity. CONCLUSIONS: These data suggest nuclear FGFR1 contributes to endocrine resistance by modulating gene transcription in ER(+) breast cancer. Nuclear FGFR1 activity was unaffected by FGFR TKIs, thus supporting the development of treatment strategies to inhibit nuclear FGFR1 in ER+/FGFR1 overexpressing breast cancer. American Association for Cancer Research 2021-08-01 2021-05-19 /pmc/articles/PMC8338892/ /pubmed/34011560 http://dx.doi.org/10.1158/1078-0432.CCR-20-3905 Text en ©2021 The Authors; Published by the American Association for Cancer Research https://creativecommons.org/licenses/by-nc-nd/4.0/This open access article is distributed under the Creative Commons Attribution-NonCommercial-NoDerivatives 4.0 International (CC BY-NC-ND 4.0) license.
spellingShingle Translational Cancer Mechanisms and Therapy
Servetto, Alberto
Kollipara, Rahul
Formisano, Luigi
Lin, Chang-Ching
Lee, Kyung-Min
Sudhan, Dhivya R.
Gonzalez-Ericsson, Paula I.
Chatterjee, Sumanta
Guerrero-Zotano, Angel
Mendiratta, Saurabh
Akamatsu, Hiroaki
James, Nicholas
Bianco, Roberto
Hanker, Ariella B.
Kittler, Ralf
Arteaga, Carlos L.
Nuclear FGFR1 Regulates Gene Transcription and Promotes Antiestrogen Resistance in ER(+) Breast Cancer
title Nuclear FGFR1 Regulates Gene Transcription and Promotes Antiestrogen Resistance in ER(+) Breast Cancer
title_full Nuclear FGFR1 Regulates Gene Transcription and Promotes Antiestrogen Resistance in ER(+) Breast Cancer
title_fullStr Nuclear FGFR1 Regulates Gene Transcription and Promotes Antiestrogen Resistance in ER(+) Breast Cancer
title_full_unstemmed Nuclear FGFR1 Regulates Gene Transcription and Promotes Antiestrogen Resistance in ER(+) Breast Cancer
title_short Nuclear FGFR1 Regulates Gene Transcription and Promotes Antiestrogen Resistance in ER(+) Breast Cancer
title_sort nuclear fgfr1 regulates gene transcription and promotes antiestrogen resistance in er(+) breast cancer
topic Translational Cancer Mechanisms and Therapy
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8338892/
https://www.ncbi.nlm.nih.gov/pubmed/34011560
http://dx.doi.org/10.1158/1078-0432.CCR-20-3905
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