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Targeting PEA3 transcription factors to mitigate small cell lung cancer progression
by
Aziz, Adam
, Rickabaugh, Tammy M.
, Sen, Chandani
, Sandlin, Jenna M.
, Vijayaraj, Preethi
, Lund, Andrew J.
, Aros, Cody J.
, Vuong, Valarie
, Durra, Abdo
, Choi, WooSuk
, Marin, Caliope
, Gomperts, Brigitte N.
, Shia, David W.
, Lu, Michelle M.
, Purkayastha, Arunima
, Graeber, Thomas G.
in
1-Phosphatidylinositol 3-kinase
/ 13/100
/ 13/31
/ 14/19
/ 14/63
/ 38/39
/ 38/91
/ 45/91
/ 631/337/2019
/ 631/67/1059/2326
/ 64/60
/ 82/51
/ Adaptor proteins
/ AKT protein
/ Apoptosis
/ Cell Biology
/ Cell Line, Tumor
/ Chemotherapy
/ Cisplatin
/ Diapause
/ Embryos
/ Etoposide
/ Fibroblast growth factor receptors
/ Gene expression
/ Human Genetics
/ Humans
/ Internal Medicine
/ Lung cancer
/ Lung Neoplasms - drug therapy
/ Lung Neoplasms - genetics
/ Lung Neoplasms - metabolism
/ MAP kinase
/ Medicine
/ Medicine & Public Health
/ Metastases
/ Neoplasm Recurrence, Local
/ Oncology
/ Phosphatidylinositol 3-Kinases - genetics
/ Phosphorylation
/ Small cell lung carcinoma
/ Small Cell Lung Carcinoma - drug therapy
/ Small Cell Lung Carcinoma - genetics
/ Small Cell Lung Carcinoma - pathology
/ Transcription factors
/ Transcription Factors - genetics
/ Transcription Factors - metabolism
/ Transcriptomes
2023
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Targeting PEA3 transcription factors to mitigate small cell lung cancer progression
by
Aziz, Adam
, Rickabaugh, Tammy M.
, Sen, Chandani
, Sandlin, Jenna M.
, Vijayaraj, Preethi
, Lund, Andrew J.
, Aros, Cody J.
, Vuong, Valarie
, Durra, Abdo
, Choi, WooSuk
, Marin, Caliope
, Gomperts, Brigitte N.
, Shia, David W.
, Lu, Michelle M.
, Purkayastha, Arunima
, Graeber, Thomas G.
in
1-Phosphatidylinositol 3-kinase
/ 13/100
/ 13/31
/ 14/19
/ 14/63
/ 38/39
/ 38/91
/ 45/91
/ 631/337/2019
/ 631/67/1059/2326
/ 64/60
/ 82/51
/ Adaptor proteins
/ AKT protein
/ Apoptosis
/ Cell Biology
/ Cell Line, Tumor
/ Chemotherapy
/ Cisplatin
/ Diapause
/ Embryos
/ Etoposide
/ Fibroblast growth factor receptors
/ Gene expression
/ Human Genetics
/ Humans
/ Internal Medicine
/ Lung cancer
/ Lung Neoplasms - drug therapy
/ Lung Neoplasms - genetics
/ Lung Neoplasms - metabolism
/ MAP kinase
/ Medicine
/ Medicine & Public Health
/ Metastases
/ Neoplasm Recurrence, Local
/ Oncology
/ Phosphatidylinositol 3-Kinases - genetics
/ Phosphorylation
/ Small cell lung carcinoma
/ Small Cell Lung Carcinoma - drug therapy
/ Small Cell Lung Carcinoma - genetics
/ Small Cell Lung Carcinoma - pathology
/ Transcription factors
/ Transcription Factors - genetics
/ Transcription Factors - metabolism
/ Transcriptomes
2023
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Targeting PEA3 transcription factors to mitigate small cell lung cancer progression
by
Aziz, Adam
, Rickabaugh, Tammy M.
, Sen, Chandani
, Sandlin, Jenna M.
, Vijayaraj, Preethi
, Lund, Andrew J.
, Aros, Cody J.
, Vuong, Valarie
, Durra, Abdo
, Choi, WooSuk
, Marin, Caliope
, Gomperts, Brigitte N.
, Shia, David W.
, Lu, Michelle M.
, Purkayastha, Arunima
, Graeber, Thomas G.
in
1-Phosphatidylinositol 3-kinase
/ 13/100
/ 13/31
/ 14/19
/ 14/63
/ 38/39
/ 38/91
/ 45/91
/ 631/337/2019
/ 631/67/1059/2326
/ 64/60
/ 82/51
/ Adaptor proteins
/ AKT protein
/ Apoptosis
/ Cell Biology
/ Cell Line, Tumor
/ Chemotherapy
/ Cisplatin
/ Diapause
/ Embryos
/ Etoposide
/ Fibroblast growth factor receptors
/ Gene expression
/ Human Genetics
/ Humans
/ Internal Medicine
/ Lung cancer
/ Lung Neoplasms - drug therapy
/ Lung Neoplasms - genetics
/ Lung Neoplasms - metabolism
/ MAP kinase
/ Medicine
/ Medicine & Public Health
/ Metastases
/ Neoplasm Recurrence, Local
/ Oncology
/ Phosphatidylinositol 3-Kinases - genetics
/ Phosphorylation
/ Small cell lung carcinoma
/ Small Cell Lung Carcinoma - drug therapy
/ Small Cell Lung Carcinoma - genetics
/ Small Cell Lung Carcinoma - pathology
/ Transcription factors
/ Transcription Factors - genetics
/ Transcription Factors - metabolism
/ Transcriptomes
2023
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Targeting PEA3 transcription factors to mitigate small cell lung cancer progression
Journal Article
Targeting PEA3 transcription factors to mitigate small cell lung cancer progression
2023
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Overview
Small cell lung cancer (SCLC) remains a lethal disease with a dismal overall survival rate of 6% despite promising responses to upfront combination chemotherapy. The key drivers of such rapid mortality include early metastatic dissemination in the natural course of the disease and the near guaranteed emergence of chemoresistant disease. Here, we found that we could model the regression and relapse seen in clinical SCLC in vitro. We utilized time-course resolved RNA-sequencing to globally profile transcriptome changes as SCLC cells responded to a combination of cisplatin and etoposide—the standard-of-care in SCLC. Comparisons across time points demonstrated a distinct transient transcriptional state resembling embryonic diapause. Differential gene expression analysis revealed that expression of the PEA3 transcription factors ETV4 and ETV5 were transiently upregulated in the surviving fraction of cells which we determined to be necessary for efficient clonogenic expansion following chemotherapy. The FGFR-PEA3 signaling axis guided the identification of a pan-FGFR inhibitor demonstrating in vitro and in vivo efficacy in delaying progression following combination chemotherapy, observed inhibition of phosphorylation of the FGFR adaptor FRS2 and corresponding downstream MAPK and PI3K-Akt signaling pathways. Taken together, these data nominate PEA3 transcription factors as key mediators of relapse progression in SCLC and identify a clinically actionable small molecule candidate for delaying relapse of SCLC.
Publisher
Nature Publishing Group UK,Nature Publishing Group
Subject
1-Phosphatidylinositol 3-kinase
/ 13/100
/ 13/31
/ 14/19
/ 14/63
/ 38/39
/ 38/91
/ 45/91
/ 64/60
/ 82/51
/ Diapause
/ Embryos
/ Fibroblast growth factor receptors
/ Humans
/ Lung Neoplasms - drug therapy
/ Medicine
/ Oncology
/ Phosphatidylinositol 3-Kinases - genetics
/ Small Cell Lung Carcinoma - drug therapy
/ Small Cell Lung Carcinoma - genetics
/ Small Cell Lung Carcinoma - pathology
/ Transcription Factors - genetics
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