Cargando…

RASSF10 suppresses colorectal cancer growth by activating P53 signaling and sensitizes colorectal cancer cell to docetaxel

RASSF10 has previously been reported to be frequently methylated in a number of malignancies. To understand the importance of RASSF10 inactivation in colorectal carcinogenesis, eight colorectal cancer cell lines, 89 cases of primary colorectal cancer and 5 cases of normal colorectal mucosa were exam...

Descripción completa

Detalles Bibliográficos
Autores principales: Guo, Jing, Yang, Yage, Yang, Yunsheng, Linghu, Enqiang, Zhan, Qimin, Brock, Malcolm V., Herman, James G., Zhang, Bingyong, Guo, Mingzhou
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Impact Journals LLC 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4414183/
https://www.ncbi.nlm.nih.gov/pubmed/25638156
_version_ 1782368892640821248
author Guo, Jing
Yang, Yage
Yang, Yunsheng
Linghu, Enqiang
Zhan, Qimin
Brock, Malcolm V.
Herman, James G.
Zhang, Bingyong
Guo, Mingzhou
author_facet Guo, Jing
Yang, Yage
Yang, Yunsheng
Linghu, Enqiang
Zhan, Qimin
Brock, Malcolm V.
Herman, James G.
Zhang, Bingyong
Guo, Mingzhou
author_sort Guo, Jing
collection PubMed
description RASSF10 has previously been reported to be frequently methylated in a number of malignancies. To understand the importance of RASSF10 inactivation in colorectal carcinogenesis, eight colorectal cancer cell lines, 89 cases of primary colorectal cancer and 5 cases of normal colorectal mucosa were examined. Methylation specific PCR, western blot, siRNA, gene expression array and xenograft mice were employed. The expression of RASSF10 was regulated by promoter regional methylation in colorectal cancer cells. RASSF10 was methylated in 60.7% (54/89) of primary colorectal cancers and was positively associated with tumor stage (p < 0.05) and metastasis (p < 0.05). Restoration of RASSF10 led to inhibition of colorectal cancer cell proliferation in vitro and in vivo and increased apoptosis. Gene expression arrays discovered RASSF10 inhibition of MDM2 expression as a mediator of these effects, which was confirmed with RT-PCR and western blot. RASSF10 was shown to activate P53 signaling in RKO and HCT116 cells after UV exposure, and sensitized these cells to docetaxel. In conclusion, our study demonstrates RASSF10 is frequently methylated in human colorectal cancer leading to loss of expression. RASSF10 normally suppresses human colorectal cancer growth by activating P53 signaling in colorectal cancer, and restored expression sensitizes colorectal cancer to docetaxel.
format Online
Article
Text
id pubmed-4414183
institution National Center for Biotechnology Information
language English
publishDate 2015
publisher Impact Journals LLC
record_format MEDLINE/PubMed
spelling pubmed-44141832015-05-08 RASSF10 suppresses colorectal cancer growth by activating P53 signaling and sensitizes colorectal cancer cell to docetaxel Guo, Jing Yang, Yage Yang, Yunsheng Linghu, Enqiang Zhan, Qimin Brock, Malcolm V. Herman, James G. Zhang, Bingyong Guo, Mingzhou Oncotarget Research Paper RASSF10 has previously been reported to be frequently methylated in a number of malignancies. To understand the importance of RASSF10 inactivation in colorectal carcinogenesis, eight colorectal cancer cell lines, 89 cases of primary colorectal cancer and 5 cases of normal colorectal mucosa were examined. Methylation specific PCR, western blot, siRNA, gene expression array and xenograft mice were employed. The expression of RASSF10 was regulated by promoter regional methylation in colorectal cancer cells. RASSF10 was methylated in 60.7% (54/89) of primary colorectal cancers and was positively associated with tumor stage (p < 0.05) and metastasis (p < 0.05). Restoration of RASSF10 led to inhibition of colorectal cancer cell proliferation in vitro and in vivo and increased apoptosis. Gene expression arrays discovered RASSF10 inhibition of MDM2 expression as a mediator of these effects, which was confirmed with RT-PCR and western blot. RASSF10 was shown to activate P53 signaling in RKO and HCT116 cells after UV exposure, and sensitized these cells to docetaxel. In conclusion, our study demonstrates RASSF10 is frequently methylated in human colorectal cancer leading to loss of expression. RASSF10 normally suppresses human colorectal cancer growth by activating P53 signaling in colorectal cancer, and restored expression sensitizes colorectal cancer to docetaxel. Impact Journals LLC 2015-01-31 /pmc/articles/PMC4414183/ /pubmed/25638156 Text en Copyright: © 2015 Guo et al. http://creativecommons.org/licenses/by/2.5/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Paper
Guo, Jing
Yang, Yage
Yang, Yunsheng
Linghu, Enqiang
Zhan, Qimin
Brock, Malcolm V.
Herman, James G.
Zhang, Bingyong
Guo, Mingzhou
RASSF10 suppresses colorectal cancer growth by activating P53 signaling and sensitizes colorectal cancer cell to docetaxel
title RASSF10 suppresses colorectal cancer growth by activating P53 signaling and sensitizes colorectal cancer cell to docetaxel
title_full RASSF10 suppresses colorectal cancer growth by activating P53 signaling and sensitizes colorectal cancer cell to docetaxel
title_fullStr RASSF10 suppresses colorectal cancer growth by activating P53 signaling and sensitizes colorectal cancer cell to docetaxel
title_full_unstemmed RASSF10 suppresses colorectal cancer growth by activating P53 signaling and sensitizes colorectal cancer cell to docetaxel
title_short RASSF10 suppresses colorectal cancer growth by activating P53 signaling and sensitizes colorectal cancer cell to docetaxel
title_sort rassf10 suppresses colorectal cancer growth by activating p53 signaling and sensitizes colorectal cancer cell to docetaxel
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4414183/
https://www.ncbi.nlm.nih.gov/pubmed/25638156
work_keys_str_mv AT guojing rassf10suppressescolorectalcancergrowthbyactivatingp53signalingandsensitizescolorectalcancercelltodocetaxel
AT yangyage rassf10suppressescolorectalcancergrowthbyactivatingp53signalingandsensitizescolorectalcancercelltodocetaxel
AT yangyunsheng rassf10suppressescolorectalcancergrowthbyactivatingp53signalingandsensitizescolorectalcancercelltodocetaxel
AT linghuenqiang rassf10suppressescolorectalcancergrowthbyactivatingp53signalingandsensitizescolorectalcancercelltodocetaxel
AT zhanqimin rassf10suppressescolorectalcancergrowthbyactivatingp53signalingandsensitizescolorectalcancercelltodocetaxel
AT brockmalcolmv rassf10suppressescolorectalcancergrowthbyactivatingp53signalingandsensitizescolorectalcancercelltodocetaxel
AT hermanjamesg rassf10suppressescolorectalcancergrowthbyactivatingp53signalingandsensitizescolorectalcancercelltodocetaxel
AT zhangbingyong rassf10suppressescolorectalcancergrowthbyactivatingp53signalingandsensitizescolorectalcancercelltodocetaxel
AT guomingzhou rassf10suppressescolorectalcancergrowthbyactivatingp53signalingandsensitizescolorectalcancercelltodocetaxel