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PP2A-B55? antagonizes cyclin E1 proteolysis and promotes its dysregulation in cancer.


ABSTRACT: Cyclin E1 regulates the initiation of S-phase in cellular division. However, in many cancers, cyclin E1 is aberrantly overexpressed and this molecular phenotype correlates with increased tumor aggressiveness and poor patient survival. The molecular cause(s) of cyclin E1 abnormalities in cancers is poorly understood. Here, we show that cyclin E1 overexpression in cancer is promoted by dysregulation of the protein phosphatase PP2A-B55?. PP2A-B55? targets the N- and C-terminal phosphodegrons of cyclin E1 for dephosphorylation, thus protecting it from degradation mediated by the SCF(Fbxw7) ubiquitin ligase. Augmented B55? expression stabilizes cyclin E1 and promotes its overexpression in cancer-derived cell lines and breast tumors. Conversely, B55? ablation enforces the degradation of cyclin E1 and inhibits cancer cell proliferation in vitro and tumor formation in vivo. Therefore, PP2A-B55? promotes cyclin E1 overexpression by antagonizing its degradation and its inhibition could represent a therapeutic mechanism for abrogating cyclin E1 function in cancers.

SUBMITTER: Tan Y 

PROVIDER: S-EPMC4064712 | biostudies-literature | 2014 Apr

REPOSITORIES: biostudies-literature

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PP2A-B55β antagonizes cyclin E1 proteolysis and promotes its dysregulation in cancer.

Tan Yingmeei Y   Sun Dahui D   Jiang Weijian W   Klotz-Noack Kathleen K   Vashisht Ajay A AA   Wohlschlegel James J   Widschwendter Martin M   Spruck Charles C  

Cancer research 20140207 7


Cyclin E1 regulates the initiation of S-phase in cellular division. However, in many cancers, cyclin E1 is aberrantly overexpressed and this molecular phenotype correlates with increased tumor aggressiveness and poor patient survival. The molecular cause(s) of cyclin E1 abnormalities in cancers is poorly understood. Here, we show that cyclin E1 overexpression in cancer is promoted by dysregulation of the protein phosphatase PP2A-B55β. PP2A-B55β targets the N- and C-terminal phosphodegrons of cyc  ...[more]

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