Cargando…

Human homolog of Drosophila Hairy and enhancer of split 1, Hes1, negatively regulates δ-catenin (CTNND2) expression in cooperation with E2F1 in prostate cancer

BACKGROUND: Neuronal synaptic junction protein δ-catenin (CTNND2) is often overexpressed in prostatic adenocarcinomas but the mechanisms of its activation are unknown. To address this question, we studied the hypothesis that Hes1, human homolog of Drosophila Hairy and enhancer of split (Hes) 1, is a...

Descripción completa

Detalles Bibliográficos
Autores principales: Lu, Jian-Ping, Zhang, Jiao, Kim, Kwonseop, Case, Thomas C, Matusik, Robert J, Chen, Yan-hua, Wolfe, Michael, Nopparat, Jongdee, Lu, Qun
Formato: Texto
Lenguaje:English
Publicado: BioMed Central 2010
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3009707/
https://www.ncbi.nlm.nih.gov/pubmed/21106062
http://dx.doi.org/10.1186/1476-4598-9-304
_version_ 1782194734604746752
author Lu, Jian-Ping
Zhang, Jiao
Kim, Kwonseop
Case, Thomas C
Matusik, Robert J
Chen, Yan-hua
Wolfe, Michael
Nopparat, Jongdee
Lu, Qun
author_facet Lu, Jian-Ping
Zhang, Jiao
Kim, Kwonseop
Case, Thomas C
Matusik, Robert J
Chen, Yan-hua
Wolfe, Michael
Nopparat, Jongdee
Lu, Qun
author_sort Lu, Jian-Ping
collection PubMed
description BACKGROUND: Neuronal synaptic junction protein δ-catenin (CTNND2) is often overexpressed in prostatic adenocarcinomas but the mechanisms of its activation are unknown. To address this question, we studied the hypothesis that Hes1, human homolog of Drosophila Hairy and enhancer of split (Hes) 1, is a transcriptional repressor of δ-catenin expression and plays an important role in molecular carcinogenesis. RESULTS: We identified that, using a δ-catenin promoter reporter assay, Hes1, but not its inactive mutant, significantly repressed the upregulation of δ-catenin-luciferase activities induced by E2F1. Hes1 binds directly to the E-boxes on δ-catenin promoter and can reduce the expression of δ-catenin in prostate cancer cells. In prostate cancer CWR22-Rv1 and PC3 cell lines, which showed distinct δ-catenin overexpression, E2F1 and Hes1 expression pattern was altered. The suppression of Hes1 expression, either by γ-secretase inhibitors or by siRNA against Hes1, increased δ-catenin expression. γ-Secretase inhibition delayed S/G2-phase transition during cell cycle progression and induced cell shape changes to extend cellular processes in prostate cancer cells. In neuroendocrine prostate cancer mouse model derived allograft NE-10 tumors, δ-catenin showed an increased expression while Hes1 expression was diminished. Furthermore, E2F1 transcription was very high in subgroup of NE-10 tumors in which Hes1 still displayed residual expression, while its expression was only moderately increased in NE-10 tumors where Hes1 expression was completely suppressed. CONCLUSION: These studies support coordinated regulation of δ-catenin expression by both the activating transcription factor E2F1 and repressive transcription factor Hes1 in prostate cancer progression.
format Text
id pubmed-3009707
institution National Center for Biotechnology Information
language English
publishDate 2010
publisher BioMed Central
record_format MEDLINE/PubMed
spelling pubmed-30097072010-12-24 Human homolog of Drosophila Hairy and enhancer of split 1, Hes1, negatively regulates δ-catenin (CTNND2) expression in cooperation with E2F1 in prostate cancer Lu, Jian-Ping Zhang, Jiao Kim, Kwonseop Case, Thomas C Matusik, Robert J Chen, Yan-hua Wolfe, Michael Nopparat, Jongdee Lu, Qun Mol Cancer Research BACKGROUND: Neuronal synaptic junction protein δ-catenin (CTNND2) is often overexpressed in prostatic adenocarcinomas but the mechanisms of its activation are unknown. To address this question, we studied the hypothesis that Hes1, human homolog of Drosophila Hairy and enhancer of split (Hes) 1, is a transcriptional repressor of δ-catenin expression and plays an important role in molecular carcinogenesis. RESULTS: We identified that, using a δ-catenin promoter reporter assay, Hes1, but not its inactive mutant, significantly repressed the upregulation of δ-catenin-luciferase activities induced by E2F1. Hes1 binds directly to the E-boxes on δ-catenin promoter and can reduce the expression of δ-catenin in prostate cancer cells. In prostate cancer CWR22-Rv1 and PC3 cell lines, which showed distinct δ-catenin overexpression, E2F1 and Hes1 expression pattern was altered. The suppression of Hes1 expression, either by γ-secretase inhibitors or by siRNA against Hes1, increased δ-catenin expression. γ-Secretase inhibition delayed S/G2-phase transition during cell cycle progression and induced cell shape changes to extend cellular processes in prostate cancer cells. In neuroendocrine prostate cancer mouse model derived allograft NE-10 tumors, δ-catenin showed an increased expression while Hes1 expression was diminished. Furthermore, E2F1 transcription was very high in subgroup of NE-10 tumors in which Hes1 still displayed residual expression, while its expression was only moderately increased in NE-10 tumors where Hes1 expression was completely suppressed. CONCLUSION: These studies support coordinated regulation of δ-catenin expression by both the activating transcription factor E2F1 and repressive transcription factor Hes1 in prostate cancer progression. BioMed Central 2010-11-24 /pmc/articles/PMC3009707/ /pubmed/21106062 http://dx.doi.org/10.1186/1476-4598-9-304 Text en Copyright ©2010 Lu et al; licensee BioMed Central Ltd. This is an Open Access article distributed under the terms of the Creative Commons Attribution License (<url>http://creativecommons.org/licenses/by/2.0</url>), which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research
Lu, Jian-Ping
Zhang, Jiao
Kim, Kwonseop
Case, Thomas C
Matusik, Robert J
Chen, Yan-hua
Wolfe, Michael
Nopparat, Jongdee
Lu, Qun
Human homolog of Drosophila Hairy and enhancer of split 1, Hes1, negatively regulates δ-catenin (CTNND2) expression in cooperation with E2F1 in prostate cancer
title Human homolog of Drosophila Hairy and enhancer of split 1, Hes1, negatively regulates δ-catenin (CTNND2) expression in cooperation with E2F1 in prostate cancer
title_full Human homolog of Drosophila Hairy and enhancer of split 1, Hes1, negatively regulates δ-catenin (CTNND2) expression in cooperation with E2F1 in prostate cancer
title_fullStr Human homolog of Drosophila Hairy and enhancer of split 1, Hes1, negatively regulates δ-catenin (CTNND2) expression in cooperation with E2F1 in prostate cancer
title_full_unstemmed Human homolog of Drosophila Hairy and enhancer of split 1, Hes1, negatively regulates δ-catenin (CTNND2) expression in cooperation with E2F1 in prostate cancer
title_short Human homolog of Drosophila Hairy and enhancer of split 1, Hes1, negatively regulates δ-catenin (CTNND2) expression in cooperation with E2F1 in prostate cancer
title_sort human homolog of drosophila hairy and enhancer of split 1, hes1, negatively regulates δ-catenin (ctnnd2) expression in cooperation with e2f1 in prostate cancer
topic Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3009707/
https://www.ncbi.nlm.nih.gov/pubmed/21106062
http://dx.doi.org/10.1186/1476-4598-9-304
work_keys_str_mv AT lujianping humanhomologofdrosophilahairyandenhancerofsplit1hes1negativelyregulatesdcateninctnnd2expressionincooperationwithe2f1inprostatecancer
AT zhangjiao humanhomologofdrosophilahairyandenhancerofsplit1hes1negativelyregulatesdcateninctnnd2expressionincooperationwithe2f1inprostatecancer
AT kimkwonseop humanhomologofdrosophilahairyandenhancerofsplit1hes1negativelyregulatesdcateninctnnd2expressionincooperationwithe2f1inprostatecancer
AT casethomasc humanhomologofdrosophilahairyandenhancerofsplit1hes1negativelyregulatesdcateninctnnd2expressionincooperationwithe2f1inprostatecancer
AT matusikrobertj humanhomologofdrosophilahairyandenhancerofsplit1hes1negativelyregulatesdcateninctnnd2expressionincooperationwithe2f1inprostatecancer
AT chenyanhua humanhomologofdrosophilahairyandenhancerofsplit1hes1negativelyregulatesdcateninctnnd2expressionincooperationwithe2f1inprostatecancer
AT wolfemichael humanhomologofdrosophilahairyandenhancerofsplit1hes1negativelyregulatesdcateninctnnd2expressionincooperationwithe2f1inprostatecancer
AT nopparatjongdee humanhomologofdrosophilahairyandenhancerofsplit1hes1negativelyregulatesdcateninctnnd2expressionincooperationwithe2f1inprostatecancer
AT luqun humanhomologofdrosophilahairyandenhancerofsplit1hes1negativelyregulatesdcateninctnnd2expressionincooperationwithe2f1inprostatecancer