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Functional role of DNA mismatch repair gene PMS2 in prostate cancer cells

DNA mismatch repair (MMR) enzymes act as proofreading complexes that maintains genomic integrity and MMR-deficient cells show an increased mutation rate. MMR has also been shown to influence cell signaling and the regulation of tumor development. MMR consists of various genes and includes post-meiot...

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Autores principales: Fukuhara, Shinichiro, Chang, Inik, Mitsui, Yozo, Chiyomaru, Takeshi, Yamamura, Soichiro, Majid, Shahana, Saini, Sharanjot, Deng, Guoren, Gill, Ankurpreet, Wong, Darryn K., Shiina, Hiroaki, Nonomura, Norio, Lau, Yun-Fai C., Dahiya, Rajvir, Tanaka, Yuichiro
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Impact Journals LLC 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4599273/
https://www.ncbi.nlm.nih.gov/pubmed/26036629
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author Fukuhara, Shinichiro
Chang, Inik
Mitsui, Yozo
Chiyomaru, Takeshi
Yamamura, Soichiro
Majid, Shahana
Saini, Sharanjot
Deng, Guoren
Gill, Ankurpreet
Wong, Darryn K.
Shiina, Hiroaki
Nonomura, Norio
Lau, Yun-Fai C.
Dahiya, Rajvir
Tanaka, Yuichiro
author_facet Fukuhara, Shinichiro
Chang, Inik
Mitsui, Yozo
Chiyomaru, Takeshi
Yamamura, Soichiro
Majid, Shahana
Saini, Sharanjot
Deng, Guoren
Gill, Ankurpreet
Wong, Darryn K.
Shiina, Hiroaki
Nonomura, Norio
Lau, Yun-Fai C.
Dahiya, Rajvir
Tanaka, Yuichiro
author_sort Fukuhara, Shinichiro
collection PubMed
description DNA mismatch repair (MMR) enzymes act as proofreading complexes that maintains genomic integrity and MMR-deficient cells show an increased mutation rate. MMR has also been shown to influence cell signaling and the regulation of tumor development. MMR consists of various genes and includes post-meiotic segregation (PMS) 2 which is a vital component of mutL-alpha. In prostate, the functional role of this gene has never been reported and in this study, our aim was to investigate the effect of PMS2 on growth properties of prostate cancer (PCa) cells. Previous studies have shown PMS2 to be deficient in DU145 cells and this lack of expression was confirmed by Western blotting whereas normal prostatic PWR-1E and RWPE-1 cells expressed this gene. PMS2 effects on various growth properties of DU145 were then determined by creating stable gene transfectants. Interestingly, PMS2 caused decreased cell proliferation, migration, invasion, and in vivo growth; and increased apoptosis as compared to vector control. We further analyzed genes affected by PMS2 expression and observe the apoptosis-related TMS1 gene to be significantly upregulated whereas anti-apoptotic BCL2A1 was downregulated. These results demonstrate a functional role for PMS2 to protect against PCa progression by enhancing apoptosis of PCa cells.
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spelling pubmed-45992732015-10-26 Functional role of DNA mismatch repair gene PMS2 in prostate cancer cells Fukuhara, Shinichiro Chang, Inik Mitsui, Yozo Chiyomaru, Takeshi Yamamura, Soichiro Majid, Shahana Saini, Sharanjot Deng, Guoren Gill, Ankurpreet Wong, Darryn K. Shiina, Hiroaki Nonomura, Norio Lau, Yun-Fai C. Dahiya, Rajvir Tanaka, Yuichiro Oncotarget Research Paper DNA mismatch repair (MMR) enzymes act as proofreading complexes that maintains genomic integrity and MMR-deficient cells show an increased mutation rate. MMR has also been shown to influence cell signaling and the regulation of tumor development. MMR consists of various genes and includes post-meiotic segregation (PMS) 2 which is a vital component of mutL-alpha. In prostate, the functional role of this gene has never been reported and in this study, our aim was to investigate the effect of PMS2 on growth properties of prostate cancer (PCa) cells. Previous studies have shown PMS2 to be deficient in DU145 cells and this lack of expression was confirmed by Western blotting whereas normal prostatic PWR-1E and RWPE-1 cells expressed this gene. PMS2 effects on various growth properties of DU145 were then determined by creating stable gene transfectants. Interestingly, PMS2 caused decreased cell proliferation, migration, invasion, and in vivo growth; and increased apoptosis as compared to vector control. We further analyzed genes affected by PMS2 expression and observe the apoptosis-related TMS1 gene to be significantly upregulated whereas anti-apoptotic BCL2A1 was downregulated. These results demonstrate a functional role for PMS2 to protect against PCa progression by enhancing apoptosis of PCa cells. Impact Journals LLC 2015-05-06 /pmc/articles/PMC4599273/ /pubmed/26036629 Text en Copyright: © 2015 Fukuhara 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
Fukuhara, Shinichiro
Chang, Inik
Mitsui, Yozo
Chiyomaru, Takeshi
Yamamura, Soichiro
Majid, Shahana
Saini, Sharanjot
Deng, Guoren
Gill, Ankurpreet
Wong, Darryn K.
Shiina, Hiroaki
Nonomura, Norio
Lau, Yun-Fai C.
Dahiya, Rajvir
Tanaka, Yuichiro
Functional role of DNA mismatch repair gene PMS2 in prostate cancer cells
title Functional role of DNA mismatch repair gene PMS2 in prostate cancer cells
title_full Functional role of DNA mismatch repair gene PMS2 in prostate cancer cells
title_fullStr Functional role of DNA mismatch repair gene PMS2 in prostate cancer cells
title_full_unstemmed Functional role of DNA mismatch repair gene PMS2 in prostate cancer cells
title_short Functional role of DNA mismatch repair gene PMS2 in prostate cancer cells
title_sort functional role of dna mismatch repair gene pms2 in prostate cancer cells
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4599273/
https://www.ncbi.nlm.nih.gov/pubmed/26036629
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