KLF5-mediated Eppk1 expression promotes cell proliferation in cervical cancer via the p38 signaling pathway

Abstract Background Epiplakin1 (Eppk1) is part of epidermal growth factor (EGF) signal and takes part in reorganization of cytoskeleton and cell proliferation. However, the role of Eppk1 in cervical cancer (CC) remains unknown. Methods To express Eppk1 and KLF5 and their correlation, we used RNA-seq...

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Main Authors: Dong Ma, Zhe Pan, Quan Chang, Jin-jin Zhang, Xiao Liu, Na Hua, Guo-Hua Li
Format: Article
Language:English
Published: BMC 2021-04-01
Series:BMC Cancer
Subjects:
Online Access:https://doi.org/10.1186/s12885-021-08040-y
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spelling doaj-5e22d2cd96c645fbb2783c69889c414e2021-04-11T11:42:05ZengBMCBMC Cancer1471-24072021-04-0121111010.1186/s12885-021-08040-yKLF5-mediated Eppk1 expression promotes cell proliferation in cervical cancer via the p38 signaling pathwayDong Ma0Zhe Pan1Quan Chang2Jin-jin Zhang3Xiao Liu4Na Hua5Guo-Hua Li6School of Public Health, North China University of Science and TechnologySchool of Public Health, North China University of Science and TechnologySchool of Public Health, North China University of Science and TechnologySchool of Public Health, North China University of Science and TechnologyDepartment of Infection Control, the Fourth Hospital of Hebei Medical UniversityTangshan Customs, People’s Republic of ChinaDepartment of Oncology, the Second Hospital of TangshanAbstract Background Epiplakin1 (Eppk1) is part of epidermal growth factor (EGF) signal and takes part in reorganization of cytoskeleton and cell proliferation. However, the role of Eppk1 in cervical cancer (CC) remains unknown. Methods To express Eppk1 and KLF5 and their correlation, we used RNA-sequence, RT-qPCR, TCGA database and immunofluorescence staining in vitro and in different pathological cervical tissues. In CC cell lines, we tested adenovirus-mediated over expression or knockdown of KLF5 and siRNA-mediated knockdown of Eppk1 and a suiting assessment of cell proliferation and cell signaling by western blot and CCK8 tests. We studied the mechanism by which KLF5 regulates Eppk1 expression by reporter gene test and chromatin immunoprecipitation test. Results Eppk1 expression promoted in CC tissues and cell lines compared with increased KLF5 expression. The results of immunofluorescence staining further showed the increased co-expression of Eppk1 and KLF5 correlated substantially with tumorigenesis in cervical tissues. Overexpression of KLF5 significantly increased Eppk1 expression at transcription and translation levels. Conversely, the knockdown of KLF5 by siRNA against KLF5 decreased Eppk1 expression. Mechanically, KLF5 activated Eppk1 transcription by direct binding to the Eppk1 promoter. Gain- and loss-of-function experiments reported that KLF5 promoted cell proliferation in Hela partly dependent on Eppk1 upregulation. Besides, KLF5-mediated activation of p38 signaling significantly decreased after Eppk1 knockdown compared with decline of proliferation, suggesting that Eppk1 lies upstream of p38 signaling affecting cell proliferation. Finally, Eppk1 expression is positively correlated with tumor size in clinicopathological features of CC. Conclusions Eppk1 may be an effective therapeutic target for affecting p38 signaling pathway and cell proliferation in cervical cancer.https://doi.org/10.1186/s12885-021-08040-yCervical cancerEppk1KLF5Proliferationp38 signaling
collection DOAJ
language English
format Article
sources DOAJ
author Dong Ma
Zhe Pan
Quan Chang
Jin-jin Zhang
Xiao Liu
Na Hua
Guo-Hua Li
spellingShingle Dong Ma
Zhe Pan
Quan Chang
Jin-jin Zhang
Xiao Liu
Na Hua
Guo-Hua Li
KLF5-mediated Eppk1 expression promotes cell proliferation in cervical cancer via the p38 signaling pathway
BMC Cancer
Cervical cancer
Eppk1
KLF5
Proliferation
p38 signaling
author_facet Dong Ma
Zhe Pan
Quan Chang
Jin-jin Zhang
Xiao Liu
Na Hua
Guo-Hua Li
author_sort Dong Ma
title KLF5-mediated Eppk1 expression promotes cell proliferation in cervical cancer via the p38 signaling pathway
title_short KLF5-mediated Eppk1 expression promotes cell proliferation in cervical cancer via the p38 signaling pathway
title_full KLF5-mediated Eppk1 expression promotes cell proliferation in cervical cancer via the p38 signaling pathway
title_fullStr KLF5-mediated Eppk1 expression promotes cell proliferation in cervical cancer via the p38 signaling pathway
title_full_unstemmed KLF5-mediated Eppk1 expression promotes cell proliferation in cervical cancer via the p38 signaling pathway
title_sort klf5-mediated eppk1 expression promotes cell proliferation in cervical cancer via the p38 signaling pathway
publisher BMC
series BMC Cancer
issn 1471-2407
publishDate 2021-04-01
description Abstract Background Epiplakin1 (Eppk1) is part of epidermal growth factor (EGF) signal and takes part in reorganization of cytoskeleton and cell proliferation. However, the role of Eppk1 in cervical cancer (CC) remains unknown. Methods To express Eppk1 and KLF5 and their correlation, we used RNA-sequence, RT-qPCR, TCGA database and immunofluorescence staining in vitro and in different pathological cervical tissues. In CC cell lines, we tested adenovirus-mediated over expression or knockdown of KLF5 and siRNA-mediated knockdown of Eppk1 and a suiting assessment of cell proliferation and cell signaling by western blot and CCK8 tests. We studied the mechanism by which KLF5 regulates Eppk1 expression by reporter gene test and chromatin immunoprecipitation test. Results Eppk1 expression promoted in CC tissues and cell lines compared with increased KLF5 expression. The results of immunofluorescence staining further showed the increased co-expression of Eppk1 and KLF5 correlated substantially with tumorigenesis in cervical tissues. Overexpression of KLF5 significantly increased Eppk1 expression at transcription and translation levels. Conversely, the knockdown of KLF5 by siRNA against KLF5 decreased Eppk1 expression. Mechanically, KLF5 activated Eppk1 transcription by direct binding to the Eppk1 promoter. Gain- and loss-of-function experiments reported that KLF5 promoted cell proliferation in Hela partly dependent on Eppk1 upregulation. Besides, KLF5-mediated activation of p38 signaling significantly decreased after Eppk1 knockdown compared with decline of proliferation, suggesting that Eppk1 lies upstream of p38 signaling affecting cell proliferation. Finally, Eppk1 expression is positively correlated with tumor size in clinicopathological features of CC. Conclusions Eppk1 may be an effective therapeutic target for affecting p38 signaling pathway and cell proliferation in cervical cancer.
topic Cervical cancer
Eppk1
KLF5
Proliferation
p38 signaling
url https://doi.org/10.1186/s12885-021-08040-y
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