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Sökning: WFRF:(Kessler Benedikt M.) > OTUB1 de-ubiquitina...

OTUB1 de-ubiquitinating enzyme promotes prostate cancer cell invasion in vitro and tumorigenesis in vivo

Iglesias-Gato, Diego (författare)
Chuan, Yin-Choy (författare)
Jiang, Ning (författare)
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Svensson, Charlotte (författare)
Bao, Jing (författare)
Paul, Indranil (författare)
Egevad, Lars (författare)
Karolinska Institutet
Kessler, Benedikt M. (författare)
Wikström, Pernilla (författare)
Umeå universitet,Patologi
Niu, Yuanjie (författare)
Flores-Morales, Amilcar (författare)
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 (creator_code:org_t)
BioMed Central (BMC), 2015
2015
Engelska.
Ingår i: Molecular Cancer. - : BioMed Central (BMC). - 1476-4598. ; 14
  • Tidskriftsartikel (refereegranskat)
Abstract Ämnesord
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  • Background:Ubiquitination is a highly dynamic and reversible process with a central role in cell homeostasis. Deregulation of several deubiquitinating enzymes has been linked to tumor development but their specific role in prostate cancer progression remains unexplored.Methods:RNAi screening was used to investigate the role of the ovarian tumor proteases (OTU) family of deubiquitinating enzymes on the proliferation and invasion capacity of prostate cancer cells. RhoA activity was measured in relation with OTUB1 effects on prostate cancer cell invasion. Tumor xenograft mouse model with stable OTUB1 knockdown was used to investigate OTUB1 influence in tumor growth.Results:Our RNAi screening identified OTUB1 as an important regulator of prostate cancer cell invasion through the modulation of RhoA activation. The effect of OTUB1 on RhoA activation is important for androgen-induced repression of p53 expression in prostate cancer cells. In localized prostate cancer tumors OTUB1 was found overexpressed as compared to normal prostatic epithelial cells. Prostate cancer xenografts expressing reduced levels of OTUB1 exhibit reduced tumor growth and reduced metastatic dissemination in vivo.Conclusions:OTUB1 mediates prostate cancer cell invasion through RhoA activation and promotes tumorigenesis in vivo. Our results suggest that drugs targeting the catalytic activity of OTUB1 could potentially be used as therapeutics for metastatic prostate cancer.

Nyckelord

Otubain 1
Deubiquitinase
Ubiquitin
Prostate cancer
RhoA
Androgen

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