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INTS6/DICE1 inhibits growth of human androgen-independent prostate cancer cells by altering the cell cycle profile and Wnt signaling

BACKGROUND: The gene encoding integrator complex subunit 6 (INTS6), previously known as deleted in cancer cells 1 (DICE1, OMIM 604331) was found to be frequently affected by allelic deletion and promoter hypermethylation in prostate cancer specimens and cell lines. A missense mutation has been detec...

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Autores principales: Filleur, Stephanie, Hirsch, Jennifer, Wille, Aline, Schön, Margarete, Sell, Christian, Shearer, Michael H, Nelius, Thomas, Wieland, Ilse
Formato: Texto
Lenguaje:English
Publicado: BioMed Central 2009
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2779787/
https://www.ncbi.nlm.nih.gov/pubmed/19906297
http://dx.doi.org/10.1186/1475-2867-9-28
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author Filleur, Stephanie
Hirsch, Jennifer
Wille, Aline
Schön, Margarete
Sell, Christian
Shearer, Michael H
Nelius, Thomas
Wieland, Ilse
author_facet Filleur, Stephanie
Hirsch, Jennifer
Wille, Aline
Schön, Margarete
Sell, Christian
Shearer, Michael H
Nelius, Thomas
Wieland, Ilse
author_sort Filleur, Stephanie
collection PubMed
description BACKGROUND: The gene encoding integrator complex subunit 6 (INTS6), previously known as deleted in cancer cells 1 (DICE1, OMIM 604331) was found to be frequently affected by allelic deletion and promoter hypermethylation in prostate cancer specimens and cell lines. A missense mutation has been detected in prostate cancer cell line LNCaP. Together, these results suggest INTS6/DICE1 as a putative tumor suppressor gene in prostate cancer. In this study, we examined the growth inhibitory effects of INTS6/DICE1 on prostate cancer cells. RESULTS: Markedly decreased INTS6/DICE1 mRNA levels were detected in prostate cancer cell lines LNCaP, DU145 and PC3 as well as CPTX1532 as compared to a cell line derived from normal prostate tissue, NPTX1532. Exogenous re-expression of INTS6/DICE1 cDNA in androgen-independent PC3 and DU145 cell lines substantially suppressed their ability to form colonies in vitro. This growth inhibition was not due to immediate induction of apoptosis. Rather, prostate cancer cells arrested in G1 phase of the cell cycle. Expression profiling of members of the Wnt signaling pathway revealed up-regulation of several genes including disheveled inhibitor CXXC finger 4 (CXXC4), frizzled homologue 7 (FZD7), transcription factor 7-like 1 (TCF7L1), and down-regulation of cyclin D1. CONCLUSION: These results show for the first time a link between INTS6/DICE1 function, cell cycle regulation and cell-cell communication involving members of the Wnt signaling pathway.
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spelling pubmed-27797872009-11-20 INTS6/DICE1 inhibits growth of human androgen-independent prostate cancer cells by altering the cell cycle profile and Wnt signaling Filleur, Stephanie Hirsch, Jennifer Wille, Aline Schön, Margarete Sell, Christian Shearer, Michael H Nelius, Thomas Wieland, Ilse Cancer Cell Int Primary research BACKGROUND: The gene encoding integrator complex subunit 6 (INTS6), previously known as deleted in cancer cells 1 (DICE1, OMIM 604331) was found to be frequently affected by allelic deletion and promoter hypermethylation in prostate cancer specimens and cell lines. A missense mutation has been detected in prostate cancer cell line LNCaP. Together, these results suggest INTS6/DICE1 as a putative tumor suppressor gene in prostate cancer. In this study, we examined the growth inhibitory effects of INTS6/DICE1 on prostate cancer cells. RESULTS: Markedly decreased INTS6/DICE1 mRNA levels were detected in prostate cancer cell lines LNCaP, DU145 and PC3 as well as CPTX1532 as compared to a cell line derived from normal prostate tissue, NPTX1532. Exogenous re-expression of INTS6/DICE1 cDNA in androgen-independent PC3 and DU145 cell lines substantially suppressed their ability to form colonies in vitro. This growth inhibition was not due to immediate induction of apoptosis. Rather, prostate cancer cells arrested in G1 phase of the cell cycle. Expression profiling of members of the Wnt signaling pathway revealed up-regulation of several genes including disheveled inhibitor CXXC finger 4 (CXXC4), frizzled homologue 7 (FZD7), transcription factor 7-like 1 (TCF7L1), and down-regulation of cyclin D1. CONCLUSION: These results show for the first time a link between INTS6/DICE1 function, cell cycle regulation and cell-cell communication involving members of the Wnt signaling pathway. BioMed Central 2009-11-11 /pmc/articles/PMC2779787/ /pubmed/19906297 http://dx.doi.org/10.1186/1475-2867-9-28 Text en Copyright ©2009 Filleur et al; licensee BioMed Central Ltd. http://creativecommons.org/licenses/by/2.0 This is an Open Access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/2.0), which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Primary research
Filleur, Stephanie
Hirsch, Jennifer
Wille, Aline
Schön, Margarete
Sell, Christian
Shearer, Michael H
Nelius, Thomas
Wieland, Ilse
INTS6/DICE1 inhibits growth of human androgen-independent prostate cancer cells by altering the cell cycle profile and Wnt signaling
title INTS6/DICE1 inhibits growth of human androgen-independent prostate cancer cells by altering the cell cycle profile and Wnt signaling
title_full INTS6/DICE1 inhibits growth of human androgen-independent prostate cancer cells by altering the cell cycle profile and Wnt signaling
title_fullStr INTS6/DICE1 inhibits growth of human androgen-independent prostate cancer cells by altering the cell cycle profile and Wnt signaling
title_full_unstemmed INTS6/DICE1 inhibits growth of human androgen-independent prostate cancer cells by altering the cell cycle profile and Wnt signaling
title_short INTS6/DICE1 inhibits growth of human androgen-independent prostate cancer cells by altering the cell cycle profile and Wnt signaling
title_sort ints6/dice1 inhibits growth of human androgen-independent prostate cancer cells by altering the cell cycle profile and wnt signaling
topic Primary research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2779787/
https://www.ncbi.nlm.nih.gov/pubmed/19906297
http://dx.doi.org/10.1186/1475-2867-9-28
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