ZNF507 affects TGF-β signaling via TGFBR1 and MAP3K8 activation in the progression of prostate cancer to an aggressive state

Abstract Background The progression of prostate cancer (PC) to the highly aggressive metastatic castration-resistant prostate cancer (mCRPC) or neuroendocrine prostate cancer (NEPC) is a fatal condition and the underlying molecular mechanisms are poorly understood. Here, we identified the novel tran...

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Main Authors: Wookbong Kwon, Seong-Kyoon Choi, Daehwan Kim, Hyeon-Gyeom Kim, Jin-Kyu Park, Jee Eun Han, Gil-Jae Cho, Sungho Yun, Wookyung Yu, Se-Hyeon Han, Yun-Sok Ha, Jun Nyung Lee, Tae Gyun Kwon, Dong-Hyung Cho, Jun-Koo Yi, Myoung Ok Kim, Zae Young Ryoo, Song Park
Format: Article
Language:English
Published: BMC 2021-09-01
Series:Journal of Experimental & Clinical Cancer Research
Subjects:
Online Access:https://doi.org/10.1186/s13046-021-02094-3
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spelling doaj-6d24add5e0b340049ca63c75363d07572021-09-19T11:20:44ZengBMCJournal of Experimental & Clinical Cancer Research1756-99662021-09-0140111710.1186/s13046-021-02094-3ZNF507 affects TGF-β signaling via TGFBR1 and MAP3K8 activation in the progression of prostate cancer to an aggressive stateWookbong Kwon0Seong-Kyoon Choi1Daehwan Kim2Hyeon-Gyeom Kim3Jin-Kyu Park4Jee Eun Han5Gil-Jae Cho6Sungho Yun7Wookyung Yu8Se-Hyeon Han9Yun-Sok Ha10Jun Nyung Lee11Tae Gyun Kwon12Dong-Hyung Cho13Jun-Koo Yi14Myoung Ok Kim15Zae Young Ryoo16Song Park17Core Protein Resources Center, DGISTCore Protein Resources Center, DGISTCore Protein Resources Center, DGISTCore Protein Resources Center, DGISTCollege of Veterinary Medicine, Kyungpook National UniversityCollege of Veterinary Medicine, Kyungpook National UniversityCollege of Veterinary Medicine, Kyungpook National UniversityCollege of Veterinary Medicine, Kyungpook National UniversityDepartment of Brain and Cognitive Sciences, DGISTSchool of Media Communication, Hanyang UniversityDepartment of Urology, School of Medicine, Kyungpook National UniversityDepartment of Urology, School of Medicine, Kyungpook National UniversityDepartment of Urology, School of Medicine, Kyungpook National UniversitySchool of Life Science, BK21 FOUR KNU Creative Bioresearch, Kyungpook National UniversityGyeongsangbuk-do Livestock Research instituteDepartment of Animal Science and Biotechnology, ITRD, Kyungpook National UniversitySchool of Life Science, BK21 FOUR KNU Creative Bioresearch, Kyungpook National UniversityCore Protein Resources Center, DGISTAbstract Background The progression of prostate cancer (PC) to the highly aggressive metastatic castration-resistant prostate cancer (mCRPC) or neuroendocrine prostate cancer (NEPC) is a fatal condition and the underlying molecular mechanisms are poorly understood. Here, we identified the novel transcriptional factor ZNF507 as a key mediator in the progression of PC to an aggressive state. Methods We analyzed ZNF507 expression in the data from various human PC database and high-grade PC patient samples. By establishment of ZNF507 knockdown and overexpression human PC cell lines, we assessed in vitro PC phenotype changes including cell proliferation, survival, migration and invasion. By performing microarray with ZNF507 knockdown PC cells, we profiled the gene clusters affected by ZNF507 knockdown. Moreover, ZNF507 regulated key signal was evaluated by dual-luciferase reporter and chromatin immunoprecipitation (ChIP) assays. Finally, we performed xenograft and in vivo metastasis assay to confirm the effect of ZNF507 knockdown in PC cells. Results We found that ZNF507 expression was increased, particularly in the highly graded PC. ZNF507 was also found to be associated with metastatic PC of a high grade. Loss- or gain-of-function–based analysis revealed that ZNF507 promotes the growth, survival, proliferation, and metastatic properties of PC (e.g., epithelial-mesenchymal transition) by upregulating TGF-β signaling. Profiling of gene clusters affected by ZNF507 knockdown revealed that ZNF507 positively regulated the transcription of TGFBR1, MAP3K8, and FURIN, which in turn promoted the progression of PC to highly metastatic and aggressive state. Conclusions Our findings suggest that ZNF507 is a novel key regulator of TGF-β signaling in the progression of malignant PC and could be a promising target for studying the development of advanced metastatic PCs.https://doi.org/10.1186/s13046-021-02094-3Prostate cancerMetastasismCRPCZNF507TGF-β signal
collection DOAJ
language English
format Article
sources DOAJ
author Wookbong Kwon
Seong-Kyoon Choi
Daehwan Kim
Hyeon-Gyeom Kim
Jin-Kyu Park
Jee Eun Han
Gil-Jae Cho
Sungho Yun
Wookyung Yu
Se-Hyeon Han
Yun-Sok Ha
Jun Nyung Lee
Tae Gyun Kwon
Dong-Hyung Cho
Jun-Koo Yi
Myoung Ok Kim
Zae Young Ryoo
Song Park
spellingShingle Wookbong Kwon
Seong-Kyoon Choi
Daehwan Kim
Hyeon-Gyeom Kim
Jin-Kyu Park
Jee Eun Han
Gil-Jae Cho
Sungho Yun
Wookyung Yu
Se-Hyeon Han
Yun-Sok Ha
Jun Nyung Lee
Tae Gyun Kwon
Dong-Hyung Cho
Jun-Koo Yi
Myoung Ok Kim
Zae Young Ryoo
Song Park
ZNF507 affects TGF-β signaling via TGFBR1 and MAP3K8 activation in the progression of prostate cancer to an aggressive state
Journal of Experimental & Clinical Cancer Research
Prostate cancer
Metastasis
mCRPC
ZNF507
TGF-β signal
author_facet Wookbong Kwon
Seong-Kyoon Choi
Daehwan Kim
Hyeon-Gyeom Kim
Jin-Kyu Park
Jee Eun Han
Gil-Jae Cho
Sungho Yun
Wookyung Yu
Se-Hyeon Han
Yun-Sok Ha
Jun Nyung Lee
Tae Gyun Kwon
Dong-Hyung Cho
Jun-Koo Yi
Myoung Ok Kim
Zae Young Ryoo
Song Park
author_sort Wookbong Kwon
title ZNF507 affects TGF-β signaling via TGFBR1 and MAP3K8 activation in the progression of prostate cancer to an aggressive state
title_short ZNF507 affects TGF-β signaling via TGFBR1 and MAP3K8 activation in the progression of prostate cancer to an aggressive state
title_full ZNF507 affects TGF-β signaling via TGFBR1 and MAP3K8 activation in the progression of prostate cancer to an aggressive state
title_fullStr ZNF507 affects TGF-β signaling via TGFBR1 and MAP3K8 activation in the progression of prostate cancer to an aggressive state
title_full_unstemmed ZNF507 affects TGF-β signaling via TGFBR1 and MAP3K8 activation in the progression of prostate cancer to an aggressive state
title_sort znf507 affects tgf-β signaling via tgfbr1 and map3k8 activation in the progression of prostate cancer to an aggressive state
publisher BMC
series Journal of Experimental & Clinical Cancer Research
issn 1756-9966
publishDate 2021-09-01
description Abstract Background The progression of prostate cancer (PC) to the highly aggressive metastatic castration-resistant prostate cancer (mCRPC) or neuroendocrine prostate cancer (NEPC) is a fatal condition and the underlying molecular mechanisms are poorly understood. Here, we identified the novel transcriptional factor ZNF507 as a key mediator in the progression of PC to an aggressive state. Methods We analyzed ZNF507 expression in the data from various human PC database and high-grade PC patient samples. By establishment of ZNF507 knockdown and overexpression human PC cell lines, we assessed in vitro PC phenotype changes including cell proliferation, survival, migration and invasion. By performing microarray with ZNF507 knockdown PC cells, we profiled the gene clusters affected by ZNF507 knockdown. Moreover, ZNF507 regulated key signal was evaluated by dual-luciferase reporter and chromatin immunoprecipitation (ChIP) assays. Finally, we performed xenograft and in vivo metastasis assay to confirm the effect of ZNF507 knockdown in PC cells. Results We found that ZNF507 expression was increased, particularly in the highly graded PC. ZNF507 was also found to be associated with metastatic PC of a high grade. Loss- or gain-of-function–based analysis revealed that ZNF507 promotes the growth, survival, proliferation, and metastatic properties of PC (e.g., epithelial-mesenchymal transition) by upregulating TGF-β signaling. Profiling of gene clusters affected by ZNF507 knockdown revealed that ZNF507 positively regulated the transcription of TGFBR1, MAP3K8, and FURIN, which in turn promoted the progression of PC to highly metastatic and aggressive state. Conclusions Our findings suggest that ZNF507 is a novel key regulator of TGF-β signaling in the progression of malignant PC and could be a promising target for studying the development of advanced metastatic PCs.
topic Prostate cancer
Metastasis
mCRPC
ZNF507
TGF-β signal
url https://doi.org/10.1186/s13046-021-02094-3
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