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PMID: 26344096 Published · ppublish English

Truncated ERG Oncoproteins from TMPRSS2-ERG Fusions Are Resistant to SPOP-Mediated Proteasome Degradation.

Molecular cell ·Vol. 59 ·No. 6 ·2015-12-21

An Jian, Ren Shancheng, Murphy Stephen J, Dalangood Sumiya, Chang Cunjie, Pang Xiaodong, Cui Yangyan, Wang Liguo, Pan Yunqian, Zhang Xiaowei, Zhu Yasheng, Wang Chenji, Halling Geoffrey C, Cheng Liang, Sukov William R, Karnes R Jeffrey, Vasmatzis George, Zhang Qing, Zhang Jun, Cheville John C, Yan Jun, Sun Yinghao, Huang Haojie

Abstract

SPOP mutations and TMPRSS2-ERG rearrangements occur collectively in up to 65% of human prostate cancers. Although the two events are mutually exclusive, it is unclear whether they are functionally interrelated. Here, we demonstrate that SPOP, functioning as an E3 ubiquitin ligase substrate-binding protein, promotes ubiquitination and proteasome degradation of wild-type ERG by recognizing a degron motif at the N terminus of ERG. Prostate cancer-associated SPOP mutations abrogate the SPOP-mediated degradation function on the ERG oncoprotein. Conversely, the majority of TMPRSS2-ERG fusions encode N-terminal-truncated ERG proteins that are resistant to the SPOP-mediated degradation because of degron impairment. Our findings reveal degradation resistance as a previously uncharacterized mechanism that contributes to elevation of truncated ERG proteins in prostate cancer. They also suggest that overcoming ERG resistance to SPOP-mediated degradation represents a viable strategy for treatment of prostate cancers expressing either mutated SPOP or truncated ERG.

Article Info
Journal
Molecular cell
Abbr.
Mol Cell
Published
2015-12-21
Indexed
2015-09-19
Updated
2016-11-25
Language
English
Country/Region
United States
NLM ID
9802571
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