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E2F2 promotes lung adenocarcinoma progression through B-Myb- and FOXM1-facilitated core transcription regulatory circuitry

Lung adenocarcinoma (LUAD) causes severe cancer death worldwide. E2F2 is a canonical transcription factor implicated in transcription regulation, cell cycle and tumorigenesis. The role of E2F2 as well as its transcription regulatory network in LUAD remains obscure. In this study, we constructed a we...

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Autores principales: Du, Kailong, Sun, Shijie, Jiang, Tinghui, Liu, Tao, Zuo, Xiaofeng, Xia, Xing, Liu, Xianjun, Wang, Yitao, Bu, Youquan
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Ivyspring International Publisher 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9274503/
https://www.ncbi.nlm.nih.gov/pubmed/35844795
http://dx.doi.org/10.7150/ijbs.72386
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author Du, Kailong
Sun, Shijie
Jiang, Tinghui
Liu, Tao
Zuo, Xiaofeng
Xia, Xing
Liu, Xianjun
Wang, Yitao
Bu, Youquan
author_facet Du, Kailong
Sun, Shijie
Jiang, Tinghui
Liu, Tao
Zuo, Xiaofeng
Xia, Xing
Liu, Xianjun
Wang, Yitao
Bu, Youquan
author_sort Du, Kailong
collection PubMed
description Lung adenocarcinoma (LUAD) causes severe cancer death worldwide. E2F2 is a canonical transcription factor implicated in transcription regulation, cell cycle and tumorigenesis. The role of E2F2 as well as its transcription regulatory network in LUAD remains obscure. In this study, we constructed a weighted gene co-expression network and identified several key modules and networks overrepresented in LUAD, including the E2F2-centered transcription regulatory network. Function analysis revealed that E2F2 overexpression accelerated cell growth, cell cycle progression and cell motility in LUAD cells whereas E2F2 knockdown inhibited these malignant phenotypes. Mechanistic investigations uncovered various E2F2-regulated downstream genes and oncogenic signaling pathways. Notably, three core transcription factors of E2F2, B-Myb and FOXM1 from the LUAD transcription regulatory network exhibited positive expression correlation, associated with each other, mutually transactivated each other, and regulated similar downstream gene cascades, hence constituting a consolidated core transcription regulatory circuitry. Moreover, E2F2 could promote and was essentially required for LUAD growth in orthotopic mouse models. Prognosis modeling revealed that a two-gene signature of E2F2 and PLK1 from the transcription regulatory circuitry remarkably stratified patients into low- and high-risk groups. Collectively, our results clarified the critical roles of E2F2 and the exquisite core transcription regulatory circuitry of E2F2/B-Myb/FOXM1 in LUAD progression.
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spelling pubmed-92745032022-07-15 E2F2 promotes lung adenocarcinoma progression through B-Myb- and FOXM1-facilitated core transcription regulatory circuitry Du, Kailong Sun, Shijie Jiang, Tinghui Liu, Tao Zuo, Xiaofeng Xia, Xing Liu, Xianjun Wang, Yitao Bu, Youquan Int J Biol Sci Research Paper Lung adenocarcinoma (LUAD) causes severe cancer death worldwide. E2F2 is a canonical transcription factor implicated in transcription regulation, cell cycle and tumorigenesis. The role of E2F2 as well as its transcription regulatory network in LUAD remains obscure. In this study, we constructed a weighted gene co-expression network and identified several key modules and networks overrepresented in LUAD, including the E2F2-centered transcription regulatory network. Function analysis revealed that E2F2 overexpression accelerated cell growth, cell cycle progression and cell motility in LUAD cells whereas E2F2 knockdown inhibited these malignant phenotypes. Mechanistic investigations uncovered various E2F2-regulated downstream genes and oncogenic signaling pathways. Notably, three core transcription factors of E2F2, B-Myb and FOXM1 from the LUAD transcription regulatory network exhibited positive expression correlation, associated with each other, mutually transactivated each other, and regulated similar downstream gene cascades, hence constituting a consolidated core transcription regulatory circuitry. Moreover, E2F2 could promote and was essentially required for LUAD growth in orthotopic mouse models. Prognosis modeling revealed that a two-gene signature of E2F2 and PLK1 from the transcription regulatory circuitry remarkably stratified patients into low- and high-risk groups. Collectively, our results clarified the critical roles of E2F2 and the exquisite core transcription regulatory circuitry of E2F2/B-Myb/FOXM1 in LUAD progression. Ivyspring International Publisher 2022-06-25 /pmc/articles/PMC9274503/ /pubmed/35844795 http://dx.doi.org/10.7150/ijbs.72386 Text en © The author(s) https://creativecommons.org/licenses/by/4.0/This is an open access article distributed under the terms of the Creative Commons Attribution License (https://creativecommons.org/licenses/by/4.0/). See http://ivyspring.com/terms for full terms and conditions.
spellingShingle Research Paper
Du, Kailong
Sun, Shijie
Jiang, Tinghui
Liu, Tao
Zuo, Xiaofeng
Xia, Xing
Liu, Xianjun
Wang, Yitao
Bu, Youquan
E2F2 promotes lung adenocarcinoma progression through B-Myb- and FOXM1-facilitated core transcription regulatory circuitry
title E2F2 promotes lung adenocarcinoma progression through B-Myb- and FOXM1-facilitated core transcription regulatory circuitry
title_full E2F2 promotes lung adenocarcinoma progression through B-Myb- and FOXM1-facilitated core transcription regulatory circuitry
title_fullStr E2F2 promotes lung adenocarcinoma progression through B-Myb- and FOXM1-facilitated core transcription regulatory circuitry
title_full_unstemmed E2F2 promotes lung adenocarcinoma progression through B-Myb- and FOXM1-facilitated core transcription regulatory circuitry
title_short E2F2 promotes lung adenocarcinoma progression through B-Myb- and FOXM1-facilitated core transcription regulatory circuitry
title_sort e2f2 promotes lung adenocarcinoma progression through b-myb- and foxm1-facilitated core transcription regulatory circuitry
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9274503/
https://www.ncbi.nlm.nih.gov/pubmed/35844795
http://dx.doi.org/10.7150/ijbs.72386
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