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Knockdown of RNF2 induces apoptosis by regulating MDM2 and p53 stability

RNF2, also known as Ring1B/Ring2, is a component of the polycomb repression complex 1 (PRC1). RNF2 is highly expressed in many tumors, suggesting that it might have an oncogenic function, but the mechanism is unknown. Here we show that knockdown of RNF2 significantly inhibits both cell proliferation...

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Autores principales: Wen, Weihong, Peng, Cong, Kim, Myoung Ok, Jeong, Chul Ho, Zhu, Feng, Yao, Ke, Zykova, Tatyana, Ma, Weiya, Carper, Andria, Langfald, Alyssa, Bode, Ann M., Dong, Zigang
Formato: Online Artículo Texto
Lenguaje:English
Publicado: 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3920452/
https://www.ncbi.nlm.nih.gov/pubmed/23318437
http://dx.doi.org/10.1038/onc.2012.605
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author Wen, Weihong
Peng, Cong
Kim, Myoung Ok
Jeong, Chul Ho
Zhu, Feng
Yao, Ke
Zykova, Tatyana
Ma, Weiya
Carper, Andria
Langfald, Alyssa
Bode, Ann M.
Dong, Zigang
author_facet Wen, Weihong
Peng, Cong
Kim, Myoung Ok
Jeong, Chul Ho
Zhu, Feng
Yao, Ke
Zykova, Tatyana
Ma, Weiya
Carper, Andria
Langfald, Alyssa
Bode, Ann M.
Dong, Zigang
author_sort Wen, Weihong
collection PubMed
description RNF2, also known as Ring1B/Ring2, is a component of the polycomb repression complex 1 (PRC1). RNF2 is highly expressed in many tumors, suggesting that it might have an oncogenic function, but the mechanism is unknown. Here we show that knockdown of RNF2 significantly inhibits both cell proliferation and colony formation in soft agar, and induces apoptosis in cancer cells. Knockdown of RNF2 in HCT116 p53(+/+) cells resulted in significantly more apoptosis than was observed in RNF2 knockdown HCT116 p53(−/−) cells, indicating that RNF2 knockdown-induced apoptosis is partially dependent on p53. Various p53-targeted genes were increased in RNF2 knockdown cells. Further studies revealed that in RNF2 knockdown cells, the p53 protein level was increased, the half-life of p53 was prolonged and p53 ubiquitination was decreased. In contrast, cells overexpressing RNF2 showed a decreased p53 protein level, a shorter p53 half-life and increased p53 ubiquitination. Importantly, we found that RNF2 directly binds with both p53 and MDM2 and promotes MDM2-mediated p53 ubiquitination. RNF2 overexpression could also increase the half-life of MDM2 and inhibit its ubiquitination. The regulation on p53 and MDM2 stability by RNF2 was also observed during the etoposide-induced DNA damage response. These results provide a possible mechanism explaining the oncogenic function of RNF2, and because RNF2 is important for cancer cell survival and proliferation, it might be an ideal target for cancer therapy or prevention.
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spelling pubmed-39204522014-07-23 Knockdown of RNF2 induces apoptosis by regulating MDM2 and p53 stability Wen, Weihong Peng, Cong Kim, Myoung Ok Jeong, Chul Ho Zhu, Feng Yao, Ke Zykova, Tatyana Ma, Weiya Carper, Andria Langfald, Alyssa Bode, Ann M. Dong, Zigang Oncogene Article RNF2, also known as Ring1B/Ring2, is a component of the polycomb repression complex 1 (PRC1). RNF2 is highly expressed in many tumors, suggesting that it might have an oncogenic function, but the mechanism is unknown. Here we show that knockdown of RNF2 significantly inhibits both cell proliferation and colony formation in soft agar, and induces apoptosis in cancer cells. Knockdown of RNF2 in HCT116 p53(+/+) cells resulted in significantly more apoptosis than was observed in RNF2 knockdown HCT116 p53(−/−) cells, indicating that RNF2 knockdown-induced apoptosis is partially dependent on p53. Various p53-targeted genes were increased in RNF2 knockdown cells. Further studies revealed that in RNF2 knockdown cells, the p53 protein level was increased, the half-life of p53 was prolonged and p53 ubiquitination was decreased. In contrast, cells overexpressing RNF2 showed a decreased p53 protein level, a shorter p53 half-life and increased p53 ubiquitination. Importantly, we found that RNF2 directly binds with both p53 and MDM2 and promotes MDM2-mediated p53 ubiquitination. RNF2 overexpression could also increase the half-life of MDM2 and inhibit its ubiquitination. The regulation on p53 and MDM2 stability by RNF2 was also observed during the etoposide-induced DNA damage response. These results provide a possible mechanism explaining the oncogenic function of RNF2, and because RNF2 is important for cancer cell survival and proliferation, it might be an ideal target for cancer therapy or prevention. 2013-01-14 2014-01-23 /pmc/articles/PMC3920452/ /pubmed/23318437 http://dx.doi.org/10.1038/onc.2012.605 Text en Users may view, print, copy, download and text and data- mine the content in such documents, for the purposes of academic research, subject always to the full Conditions of use: http://www.nature.com/authors/editorial_policies/license.html#terms
spellingShingle Article
Wen, Weihong
Peng, Cong
Kim, Myoung Ok
Jeong, Chul Ho
Zhu, Feng
Yao, Ke
Zykova, Tatyana
Ma, Weiya
Carper, Andria
Langfald, Alyssa
Bode, Ann M.
Dong, Zigang
Knockdown of RNF2 induces apoptosis by regulating MDM2 and p53 stability
title Knockdown of RNF2 induces apoptosis by regulating MDM2 and p53 stability
title_full Knockdown of RNF2 induces apoptosis by regulating MDM2 and p53 stability
title_fullStr Knockdown of RNF2 induces apoptosis by regulating MDM2 and p53 stability
title_full_unstemmed Knockdown of RNF2 induces apoptosis by regulating MDM2 and p53 stability
title_short Knockdown of RNF2 induces apoptosis by regulating MDM2 and p53 stability
title_sort knockdown of rnf2 induces apoptosis by regulating mdm2 and p53 stability
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3920452/
https://www.ncbi.nlm.nih.gov/pubmed/23318437
http://dx.doi.org/10.1038/onc.2012.605
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