Cargando…
Short Hairpin RNA Library-Based Functional Screening Identified Ribosomal Protein L31 That Modulates Prostate Cancer Cell Growth via p53 Pathway
Androgen receptor is a primary transcription factor involved in the proliferation of prostate cancer cells. Thus, hormone therapy using antiandrogens, such as bicalutamide, is a first-line treatment for the disease. Although hormone therapy initially reduces the tumor burden, many patients eventuall...
Autores principales: | , , , , , , , , |
---|---|
Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
Public Library of Science
2014
|
Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4186824/ https://www.ncbi.nlm.nih.gov/pubmed/25285958 http://dx.doi.org/10.1371/journal.pone.0108743 |
_version_ | 1782338118668517376 |
---|---|
author | Maruyama, Yojiro Miyazaki, Toshiaki Ikeda, Kazuhiro Okumura, Toshiyuki Sato, Wataru Horie-Inoue, Kuniko Okamoto, Koji Takeda, Satoru Inoue, Satoshi |
author_facet | Maruyama, Yojiro Miyazaki, Toshiaki Ikeda, Kazuhiro Okumura, Toshiyuki Sato, Wataru Horie-Inoue, Kuniko Okamoto, Koji Takeda, Satoru Inoue, Satoshi |
author_sort | Maruyama, Yojiro |
collection | PubMed |
description | Androgen receptor is a primary transcription factor involved in the proliferation of prostate cancer cells. Thus, hormone therapy using antiandrogens, such as bicalutamide, is a first-line treatment for the disease. Although hormone therapy initially reduces the tumor burden, many patients eventually relapse, developing tumors with acquired endocrine resistance. Elucidation of the molecular mechanisms underlying endocrine resistance is therefore a fundamental issue for the understanding and development of alternative therapeutics for advanced prostate cancer. In the present study, we performed short hairpin RNA (shRNA)-mediated functional screening to identify genes involved in bicalutamide-mediated effects on LNCaP prostate cancer cells. Among such candidate genes selected by screening using volcano plot analysis, ribosomal protein L31 (RPL31) was found to be essential for cell proliferation and cell-cycle progression in bicalutamide-resistant LNCaP (BicR) cells, based on small interfering RNA (siRNA)-mediated knockdown experiments. Of note, RPL31 mRNA is more abundantly expressed in BicR cells than in parental LNCaP cells, and clinical data from ONCOMINE and The Cancer Genome Altas showed that RPL31 is overexpressed in prostate carcinomas compared with benign prostate tissues. Intriguingly, protein levels of the tumor suppressor p53 and its targets, p21 and MDM2, were increased in LNCaP and BicR cells treated with RPL31 siRNA. We observed decreased degradation of p53 protein after RPL31 knockdown. Moreover, the suppression of growth and cell cycle upon RPL31 knockdown was partially recovered with p53 siRNA treatment. These results suggest that RPL31 is involved in bicalutamide-resistant growth of prostate cancer cells. The shRNA-mediated functional screen in this study provides new insight into the molecular mechanisms and therapeutic targets of advanced prostate cancer. |
format | Online Article Text |
id | pubmed-4186824 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2014 |
publisher | Public Library of Science |
record_format | MEDLINE/PubMed |
spelling | pubmed-41868242014-10-16 Short Hairpin RNA Library-Based Functional Screening Identified Ribosomal Protein L31 That Modulates Prostate Cancer Cell Growth via p53 Pathway Maruyama, Yojiro Miyazaki, Toshiaki Ikeda, Kazuhiro Okumura, Toshiyuki Sato, Wataru Horie-Inoue, Kuniko Okamoto, Koji Takeda, Satoru Inoue, Satoshi PLoS One Research Article Androgen receptor is a primary transcription factor involved in the proliferation of prostate cancer cells. Thus, hormone therapy using antiandrogens, such as bicalutamide, is a first-line treatment for the disease. Although hormone therapy initially reduces the tumor burden, many patients eventually relapse, developing tumors with acquired endocrine resistance. Elucidation of the molecular mechanisms underlying endocrine resistance is therefore a fundamental issue for the understanding and development of alternative therapeutics for advanced prostate cancer. In the present study, we performed short hairpin RNA (shRNA)-mediated functional screening to identify genes involved in bicalutamide-mediated effects on LNCaP prostate cancer cells. Among such candidate genes selected by screening using volcano plot analysis, ribosomal protein L31 (RPL31) was found to be essential for cell proliferation and cell-cycle progression in bicalutamide-resistant LNCaP (BicR) cells, based on small interfering RNA (siRNA)-mediated knockdown experiments. Of note, RPL31 mRNA is more abundantly expressed in BicR cells than in parental LNCaP cells, and clinical data from ONCOMINE and The Cancer Genome Altas showed that RPL31 is overexpressed in prostate carcinomas compared with benign prostate tissues. Intriguingly, protein levels of the tumor suppressor p53 and its targets, p21 and MDM2, were increased in LNCaP and BicR cells treated with RPL31 siRNA. We observed decreased degradation of p53 protein after RPL31 knockdown. Moreover, the suppression of growth and cell cycle upon RPL31 knockdown was partially recovered with p53 siRNA treatment. These results suggest that RPL31 is involved in bicalutamide-resistant growth of prostate cancer cells. The shRNA-mediated functional screen in this study provides new insight into the molecular mechanisms and therapeutic targets of advanced prostate cancer. Public Library of Science 2014-10-06 /pmc/articles/PMC4186824/ /pubmed/25285958 http://dx.doi.org/10.1371/journal.pone.0108743 Text en © 2014 Maruyama et al http://creativecommons.org/licenses/by/4.0/ 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 properly credited. |
spellingShingle | Research Article Maruyama, Yojiro Miyazaki, Toshiaki Ikeda, Kazuhiro Okumura, Toshiyuki Sato, Wataru Horie-Inoue, Kuniko Okamoto, Koji Takeda, Satoru Inoue, Satoshi Short Hairpin RNA Library-Based Functional Screening Identified Ribosomal Protein L31 That Modulates Prostate Cancer Cell Growth via p53 Pathway |
title | Short Hairpin RNA Library-Based Functional Screening Identified Ribosomal Protein L31 That Modulates Prostate Cancer Cell Growth via p53 Pathway |
title_full | Short Hairpin RNA Library-Based Functional Screening Identified Ribosomal Protein L31 That Modulates Prostate Cancer Cell Growth via p53 Pathway |
title_fullStr | Short Hairpin RNA Library-Based Functional Screening Identified Ribosomal Protein L31 That Modulates Prostate Cancer Cell Growth via p53 Pathway |
title_full_unstemmed | Short Hairpin RNA Library-Based Functional Screening Identified Ribosomal Protein L31 That Modulates Prostate Cancer Cell Growth via p53 Pathway |
title_short | Short Hairpin RNA Library-Based Functional Screening Identified Ribosomal Protein L31 That Modulates Prostate Cancer Cell Growth via p53 Pathway |
title_sort | short hairpin rna library-based functional screening identified ribosomal protein l31 that modulates prostate cancer cell growth via p53 pathway |
topic | Research Article |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4186824/ https://www.ncbi.nlm.nih.gov/pubmed/25285958 http://dx.doi.org/10.1371/journal.pone.0108743 |
work_keys_str_mv | AT maruyamayojiro shorthairpinrnalibrarybasedfunctionalscreeningidentifiedribosomalproteinl31thatmodulatesprostatecancercellgrowthviap53pathway AT miyazakitoshiaki shorthairpinrnalibrarybasedfunctionalscreeningidentifiedribosomalproteinl31thatmodulatesprostatecancercellgrowthviap53pathway AT ikedakazuhiro shorthairpinrnalibrarybasedfunctionalscreeningidentifiedribosomalproteinl31thatmodulatesprostatecancercellgrowthviap53pathway AT okumuratoshiyuki shorthairpinrnalibrarybasedfunctionalscreeningidentifiedribosomalproteinl31thatmodulatesprostatecancercellgrowthviap53pathway AT satowataru shorthairpinrnalibrarybasedfunctionalscreeningidentifiedribosomalproteinl31thatmodulatesprostatecancercellgrowthviap53pathway AT horieinouekuniko shorthairpinrnalibrarybasedfunctionalscreeningidentifiedribosomalproteinl31thatmodulatesprostatecancercellgrowthviap53pathway AT okamotokoji shorthairpinrnalibrarybasedfunctionalscreeningidentifiedribosomalproteinl31thatmodulatesprostatecancercellgrowthviap53pathway AT takedasatoru shorthairpinrnalibrarybasedfunctionalscreeningidentifiedribosomalproteinl31thatmodulatesprostatecancercellgrowthviap53pathway AT inouesatoshi shorthairpinrnalibrarybasedfunctionalscreeningidentifiedribosomalproteinl31thatmodulatesprostatecancercellgrowthviap53pathway |