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Published on: August 12, 2015
Functional importance of PP2A regulatory subunit loss in breast cancer
Lauren F Watt1,2, Nikita Panicker1,2, Abdul Mannan1,2
1Faculty of Health and Medicine, School of Biomedical Sciences and Pharmacy, and Priority Research Centre for Cancer Research, Innovation and Translation, University of Newcastle, Life Sciences Building, Callaghan, NSW, 2308, Australia.
Purpose:
Protein phosphatase 2A (PP2A) is a family of serine/threonine phosphatases that regulate multiple cellular signalling pathways involved in proliferation, survival and apoptosis. PP2A inhibition occurs in many cancers and is considered a tumour suppressor. Deletion/downregulation of PP2A genes has been observed in breast tumours, but the functional role of PP2A subunit loss in breast cancer has not been investigated.
Methods:
PP2A subunit expression was examined by immunohistochemistry in human breast tumours, and by qPCR and immunoblotting in breast cancer cell lines. PP2A subunits were inhibited by shRNA, and mutant PP2A genes overexpressed, in MCF10A and MCF7 cells, and growth and signalling in standard and three-dimensional cultures were assessed.
Results:
Expression of PP2A-Aα, PP2A-Bα and PP2A-B'α subunits was significantly lower in primary human breast tumours and lymph node metastases, compared to normal mammary tissue. PP2A-Aα and the regulatory subunits PP2A-Bα, -Bδ and -B'γ were also reduced in breast cancer cell lines compared to normal mammary epithelial cells. Functionally, shRNA-mediated knockdown of PP2A-Bα, -B'α and -B'γ, but not PP2A-Aα, induced hyper-proliferation and large multilobular acini in MCF10A 3D cultures, characterised by activation of ERK. Expression of a breast cancer-associated PP2A-A mutant, PP2A-Aα-E64G, which inhibits binding of regulatory subunits to the PP2A core, induced a similar hyper-proliferative phenotype. Knockdown of PP2A-Bα also induced hyper-proliferation in MCF7 breast cancer cells.
Conclusion:
These results suggest that loss of specific PP2A regulatory subunits is functionally important in breast tumourigenesis, and support strategies to enhance PP2A activity as a therapeutic approach in breast cancer.
Insights
Loss of specific Protein phosphatase 2A (PP2A) regulatory subunits promotes breast cancer cell proliferation. Enhancing PP2A activity may offer a therapeutic strategy for breast cancer treatment.
Area of Science:
- Oncology
- Molecular Biology
- Cell Biology
Background:
- Protein phosphatase 2A (PP2A) regulates key cellular pathways including proliferation, survival, and apoptosis.
- PP2A dysfunction is implicated in various cancers, with its inhibition acting as a tumor suppressor.
- Reduced expression of PP2A genes has been noted in breast tumors, but the functional impact of subunit loss remains unclear.
Purpose of the Study:
- To investigate the functional role of Protein phosphatase 2A (PP2A) subunit loss in breast cancer development.
- To determine if reduced expression of PP2A subunits contributes to breast tumorigenesis.
- To explore potential therapeutic strategies targeting PP2A activity in breast cancer.
Main Methods:
- Examined PP2A subunit expression in human breast tumors and cell lines using immunohistochemistry, qPCR, and immunoblotting.
- Utilized shRNA to inhibit specific PP2A subunits and overexpressed mutant PP2A genes in MCF10A and MCF7 cells.
- Assessed cell growth and signaling pathways in standard and 3D cultures.
Main Results:
- Significantly lower expression of PP2A-Aα, PP2A-Bα, and PP2A-B'α subunits was observed in breast tumors and metastases compared to normal tissue.
- Knockdown of PP2A-Bα, PP2A-B'α, and PP2A-B'γ subunits induced hyper-proliferation and altered acini formation in MCF10A cells, linked to ERK activation.
- Expression of a cancer-associated PP2A-A mutant (PP2A-Aα-E64G) also led to hyper-proliferation, and PP2A-Bα knockdown promoted proliferation in MCF7 cells.
Conclusions:
- Loss of specific PP2A regulatory subunits plays a crucial functional role in breast tumor initiation and progression.
- These findings support the therapeutic potential of strategies aimed at enhancing PP2A activity in breast cancer treatment.
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