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A comprehensive functional analysis of PTEN mutations: implications in tumor- and autism-related syndromes
Isabel Rodríguez-Escudero1, María D Oliver, Amparo Andrés-Pons
1Departamento de Microbiología II, Facultad de Farmacia, Universidad Complutense de Madrid, Instituto Ramón y Cajal de Investigaciones Sanitarias, Plaza de Ramón y Cajal s/n, 28040 Madrid, Spain.
Abstract:
The PTEN (phosphatase and tensin homolog) phosphatase is unique in mammals in terms of its tumor suppressor activity, exerted by dephosphorylation of the lipid second messenger PIP(3) (phosphatidylinositol 3,4,5-trisphosphate), which activates the phosphoinositide 3-kinase/Akt/mTOR (mammalian target of rapamycin) oncogenic pathway. Loss-of-function mutations in the PTEN gene are frequent in human cancer and in the germline of patients with PTEN hamartoma tumor-related syndromes (PHTSs). In addition, PTEN is mutated in patients with autism spectrum disorders (ASDs), although no functional information on these mutations is available. Here, we report a comprehensive in vivo functional analysis of human PTEN using a heterologous yeast reconstitution system. Ala-scanning mutagenesis at the catalytic loops of PTEN outlined the critical role of residues within the P-catalytic loop for PIP(3) phosphatase activity in vivo. PTEN mutations that mimic the P-catalytic loop of mammalian PTEN-like proteins (TPTE, TPIP, tensins and auxilins) affected PTEN function variably, whereas tumor- or PHTS-associated mutations targeting the PTEN P-loop produced complete loss of function. Conversely, Ala-substitutions, as well as tumor-related mutations at the WPD- and TI-catalytic loops, displayed partial activity in many cases. Interestingly, a tumor-related D92N mutation was partially active, supporting the notion that the PTEN Asp92 residue might not function as the catalytic general acid. The analysis of a panel of ASD-associated hereditary PTEN mutations revealed that most of them did not substantially abrogate PTEN activity in vivo, whereas most of PHTS-associated mutations did. Our findings reveal distinctive functional patterns among PTEN mutations found in tumors and in the germline of PHTS and ASD patients, which could be relevant for therapy.
Insights
PTEN mutations in cancer and autism spectrum disorders (ASDs) show distinct functional patterns. PTEN hamartoma tumor syndrome (PHTS) mutations often cause complete loss of function, unlike most ASD-associated mutations.
Area of Science:
- Molecular Biology
- Biochemistry
- Genetics
Background:
- PTEN (phosphatase and tensin homolog) is a crucial tumor suppressor in mammals.
- It dephosphorylates PIP(3), inhibiting the oncogenic PI3K/Akt/mTOR pathway.
- PTEN mutations are linked to human cancers, PTEN hamartoma tumor syndromes (PHTSs), and autism spectrum disorders (ASDs).
Purpose of the Study:
- To conduct a comprehensive in vivo functional analysis of human PTEN mutations.
- To investigate the role of specific catalytic loops and residues in PTEN activity.
- To differentiate the functional impact of PTEN mutations associated with tumors, PHTS, and ASDs.
Main Methods:
- Utilized a heterologous yeast reconstitution system for in vivo functional analysis of human PTEN.
- Employed Ala-scanning mutagenesis at PTEN's catalytic loops.
- Analyzed the functional consequences of tumor-, PHTS-, and ASD-associated PTEN mutations.
Main Results:
- Identified critical residues in the P-catalytic loop essential for PIP(3) phosphatase activity.
- Demonstrated that tumor- or PHTS-associated P-loop mutations typically result in complete loss of PTEN function.
- Found that most ASD-associated PTEN mutations exhibited partial or retained activity, contrasting with PHTS mutations.
- Observed partial activity for a tumor-related D92N mutation, questioning Asp92's role as a catalytic general acid.
Conclusions:
- PTEN mutations display distinct functional profiles depending on their association with cancer, PHTS, or ASDs.
- P-catalytic loop mutations are particularly detrimental to PTEN function.
- The differential functional impact of PTEN mutations may have therapeutic implications for related diseases.
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