Functional analysis of PTEN variants of unknown significance from PHTS patients unveils complex patterns of PTEN biological activity in disease

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作者
Leire Torices
Janire Mingo
Isabel Rodríguez-Escudero
Teresa Fernández-Acero
Sandra Luna
Caroline E. Nunes-Xavier
José I. López
Fátima Mercadillo
María Currás
Miguel Urioste
María Molina
Víctor J. Cid
Rafael Pulido
机构
[1] Biocruces Bizkaia Health Research Institute,Departamento de Microbiología y Parasitología, Facultad de Farmacia
[2] UCM & Instituto Ramón y Cajal de Investigaciones Sanitarias (IRYCIS),Institute for Cancer Research
[3] Oslo University Hospital,Department of Pathology
[4] Cruces University Hospital,Familial Cancer Clinical Unit
[5] Spanish National Cancer Research Centre (CNIO),undefined
[6] Ikerbasque,undefined
[7] The Basque Foundation for Science,undefined
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Heterozygous germline mutations in PTEN gene predispose to hamartomas and tumors in different tissues, as well as to neurodevelopmental disorders, and define at genetic level the PTEN Hamartoma Tumor Syndrome (PHTS). The major physiologic role of PTEN protein is the dephosphorylation of phosphatidylinositol (3,4,5)-trisphosphate (PIP3), counteracting the pro-oncogenic function of phosphatidylinositol 3-kinase (PI3K), and PTEN mutations in PHTS patients frequently abrogate PTEN PIP3 catalytic activity. PTEN also displays non-canonical PIP3-independent functions, but their involvement in PHTS pathogeny is less understood. We have previously identified and described, at clinical and genetic level, novel PTEN variants of unknown functional significance in PHTS patients. Here, we have performed an extensive functional characterization of these PTEN variants (c.77 C > T, p.(Thr26Ile), T26I; c.284 C > G, p.(Pro95Arg), P95R; c.529 T > A, p.(Tyr177Asn), Y177N; c.781 C > G, p.(Gln261Glu), Q261E; c.829 A > G, p.(Thr277Ala), T277A; and c.929 A > G, p.(Asp310Gly), D310G), including cell expression levels and protein stability, PIP3-phosphatase activity, and subcellular localization. In addition, caspase-3 cleavage analysis in cells has been assessed using a C2-domain caspase-3 cleavage-specific anti-PTEN antibody. We have found complex patterns of functional activity on PTEN variants, ranging from loss of PIP3-phosphatase activity, diminished protein expression and stability, and altered nuclear/cytoplasmic localization, to intact functional properties, when compared with PTEN wild type. Furthermore, we have found that PTEN cleavage at the C2-domain by the pro-apoptotic protease caspase-3 is diminished in specific PTEN PHTS variants. Our findings illustrate the multifaceted molecular features of pathogenic PTEN protein variants, which could account for the complexity in the genotype/phenotype manifestations of PHTS patients.
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页码:568 / 577
页数:9
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