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1.
Leukemia ; 32(4): 911-919, 2018 04.
Article in English | MEDLINE | ID: mdl-29209041

ABSTRACT

The E3 ubiquitin ligase (E3) WWP1 is an oncogenic factor implicated in the maintenance of different types of epithelial cancers. The role of WW domain-containing E3 ubiquitin protein ligase 1 (WWP1) in haematological neoplasms remains unknown. Acute myeloid leukaemia (AML) is characterized by the expansion of malignant myeloid cells blocked at different stages of differentiation. Here we report that the expression of WWP1 is significantly augmented in a large cohort of primary AML patients and in AML cell lines, compared with haematopoietic cells from healthy donors. We show that WWP1 inactivation severely impairs the growth of primary AML blasts and cell lines in vitro. In vivo, we observed a reduced leukaemogenic potential of WWP1-depleted AML cells upon transplantation into immunocompromised mice. Mechanistically, WWP1 inactivation induces the accumulation of its protein substrate p27Kip1, which ultimately contributes to G0/G1 cell cycle arrest of AML blasts. In addition, WWP1 depletion triggers the autophagy signalling and reduces survival of leukaemic cells. Collectively, our findings provide molecular insights into the anti-cancer potential of WWP1 inhibition, suggesting that this E3 is a promising biomarker and druggable target in AML.


Subject(s)
Leukemia, Myeloid, Acute/metabolism , Leukemia, Myeloid, Acute/pathology , Ubiquitin-Protein Ligases/metabolism , Animals , Cell Cycle Checkpoints/physiology , Cell Differentiation/physiology , Cell Line, Tumor , Cell Proliferation/physiology , Cell Survival/physiology , Cyclin-Dependent Kinase Inhibitor p27/metabolism , G1 Phase/physiology , Gene Expression Regulation, Neoplastic/physiology , Humans , Mice , Resting Phase, Cell Cycle/physiology , Signal Transduction/physiology , U937 Cells , Ubiquitination/physiology
2.
Oncogene ; 32(39): 4721-6, 2013 Sep 26.
Article in English | MEDLINE | ID: mdl-23085759

ABSTRACT

The Cullin4A (cul4A)-dependent ligase (CDL4A) E3 has been implicated in a variety of biological processes, including cell cycle progression and DNA damage response. Remarkably, CDL4A exerts its function through both proteolytic and non-proteolytic events. Here, we show that the p53 family member p73 is able to interact with the CDL4A complex through its direct binding to the receptor subunit DNA-binding protein 1 (DDB1). As a result, the CDL4A complex is able to monoubiquitylate p73. Modification of p73 by CDL4A-mediated ubiquitylation does not affect p73 protein stability, but negatively regulates p73-dependent transcriptional activity. Indeed, genetic or RNA interference-mediated depletion of DDB1 induces the expression of several p73 target genes in a p53-independent manner. In addition, by exploiting a bioinformatic approach, we found that elevated expression of Cul4A in human breast carcinomas is associated with repression of p73 target genes. In conclusion, our findings add a novel insight into the regulation of p73 by the CDL4A complex, through the inhibition of its transcriptional function.


Subject(s)
Cullin Proteins/physiology , DNA-Binding Proteins/antagonists & inhibitors , DNA-Binding Proteins/physiology , Neoplasm Proteins/physiology , Nuclear Proteins/antagonists & inhibitors , Transcription, Genetic , Tumor Suppressor Proteins/antagonists & inhibitors , Animals , Breast Neoplasms/metabolism , Carcinoma/metabolism , Carrier Proteins/physiology , Cell Line , DNA-Binding Proteins/metabolism , Female , Gene Expression Regulation, Neoplastic/physiology , HEK293 Cells , Humans , Mice , Multiprotein Complexes , Neoplasm Proteins/antagonists & inhibitors , Nuclear Proteins/metabolism , Protein Binding , Protein Processing, Post-Translational , Protein Stability , Transcription, Genetic/physiology , Tumor Protein p73 , Tumor Suppressor Protein p53/deficiency , Tumor Suppressor Protein p53/physiology , Tumor Suppressor Proteins/metabolism , Ubiquitination
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