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Published on: August 4, 2019
Targeting mutants of PTEN reveal distinct subsets of tumour suppressor functions
N R Leslie1, D Bennett, A Gray
1Division of Signal Transduction Therapy, Department of Biochemistry, University of Dundee, Dundee DD1 5EH, Scotland, UK. n.r.leslie@dundee.ac.uk
Abstract:
The tumour suppressor protein PTEN (phosphatase and tensin homolog deleted on chromosome 10) is a lipid phosphatase which can antagonize the phosphoinositide 3-kinase (PI 3-kinase) signalling pathway, promoting apoptosis and inhibiting cell-cycle progression and cell motility. We show that very little cellular PTEN is associated with the plasma membrane, but that artificial membrane-targeting of PTEN enhances its inhibition of signalling to protein kinase B (PKB). Evidence for potential targeting of PTEN to the membrane through PDZ domain-mediated protein-protein interactions led us to use a PTEN enzyme with a deletion of the C-terminal PDZ-binding sequence, that retains full phosphatase activity against soluble substrates, and to analyse the efficiency of this mutant in different cellular assays. The extreme C-terminal PDZ-binding sequence was dispensable for the efficient down-regulation of cellular PtdIns(3,4,5)P3 levels and a number of PI 3-kinase-dependent signalling activities, including PKB and p70S6K. However, the PDZ-binding sequence was required for the efficient inhibition of cell spreading. The data show that a PTEN mutation, similar to those found in some tumours, affects some functions of the protein but not others, and implicate the deregulation of PTEN-dependent processes other than PKB activation in the development of some tumours. Significantly, this hypothesis is supported by data showing low levels of PKB phosphorylation in a glioblastoma sample carrying a mutation in the extreme C-terminus of PTEN compared with tumours carrying phosphatase-inactivating mutations of the enzyme. Our data show that deregulation of PKB is not a universal feature of tumours carrying PTEN mutations and implicate other processes that may be deregulated in these tumours.
Insights
The tumor suppressor PTEN (phosphatase and tensin homolog deleted on chromosome 10) protein regulates cell growth. A specific mutation affects some PTEN functions, suggesting other pathways contribute to tumor development beyond PKB signaling.
Area of Science:
- Molecular Biology
- Cell Biology
- Cancer Research
Background:
- PTEN (phosphatase and tensin homolog deleted on chromosome 10) is a crucial tumor suppressor protein.
- It antagonizes the PI 3-kinase signaling pathway, impacting apoptosis, cell cycle, and motility.
- Cellular PTEN localization and function are not fully understood, particularly regarding membrane association.
Purpose of the Study:
- To investigate the role of the C-terminal PDZ-binding sequence of PTEN in its cellular functions.
- To determine if PTEN mutations found in tumors affect specific PTEN activities differently.
- To explore PTEN-dependent processes beyond PKB activation in tumor development.
Main Methods:
- Utilized a PTEN mutant lacking the C-terminal PDZ-binding sequence.
- Assessed PTEN's ability to down-regulate PtdIns(3,4,5)P3 levels and PI 3-kinase-dependent signaling (PKB, p70S6K).
- Analyzed the impact of the mutation on cell spreading and compared glioblastoma samples with different PTEN mutations.
Main Results:
- The C-terminal PDZ-binding sequence was dispensable for down-regulating PtdIns(3,4,5)P3 and inhibiting PKB/p70S6K signaling.
- This sequence was required for efficient inhibition of cell spreading.
- Glioblastoma samples with C-terminal PTEN mutations showed lower PKB phosphorylation than those with phosphatase-inactivating mutations.
Conclusions:
- PTEN mutations can selectively impair specific protein functions.
- Deregulation of PTEN-dependent processes other than PKB activation may contribute to tumor development.
- PKB deregulation is not a universal consequence of PTEN mutations in tumors.
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