Evidence that the protein phosphatase activity of PTEN contributes to embryonic development and tumour suppression in mice

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PTEN's protein phosphatase activity, in addition to its lipid phosphatase activity, is crucial for embryonic development and tumor suppression, as demonstrated by mice with a PTEN mutant lacking this specific function.

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AI-generated deep summary by qwen3.7-flash, 2026-09-17 · read from full text

This study investigates the specific roles of PTEN’s lipid versus protein phosphatase activities by generating germline knock-in mice expressing a mutant enzyme that selectively lacks protein phosphatase function. The researchers found that homozygous mice lacking this activity die in utero, while heterozygous mutants exhibit reduced survival and develop tumors in multiple organs despite normal regulation of PI3K signaling. These results indicate that both lipid and protein phosphatase activities are essential for normal embryonic development and effective tumor suppression in vivo. This paper does not explicitly discuss endometriosis or adenomyosis; it was included in the corpus via a keyword match in the upstream search index.

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Abstract

PTEN (phosphatase and tensin homologue deleted on chromosome ten) is a tumour suppressor, the function of which is impaired in many diverse cancers. It has phosphoinositide lipid phosphatase activity by which it suppresses activation of the oncogenic PI3K signalling network but in vitro also displays activity against protein substrates and is able to auto-dephosphorylate its Thr366 residue. Here we generate germline knock-in mice expressing PTEN-Y138L, a mutant enzyme which selectively lacks protein phosphatase activity and retains lipid phosphatase activity. Homozygous Pten Y138L/Y138L mice die in utero before E10.5. Primary MEFs and thymocytes with only a single Pten Y138L allele display normal low levels of AKT phosphorylation indicating effective regulation of PI3K signalling by endogenous PTEN-Y138L in vivo . Heterozygous Pten +/Y138L mice have reduced overall survival compared to wild type littermates and develop tumours in multiple organs. Our data imply that in addition to its lipid phosphatase activity, the protein phosphatase activity of PTEN is also required for normal embryonic development and tumour suppression.
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Abstract PTEN (phosphatase and tensin homologue deleted on chromosome ten) is a tumour suppressor, the function of which is impaired in many diverse cancers. It has phosphoinositide lipid phosphatase activity by which it suppresses activation of the oncogenic PI3K signalling network but in vitro also displays activity against protein substrates and is able to auto-dephosphorylate its Thr366 residue. Here we generate germline knock-in mice expressing PTEN-Y138L, a mutant enzyme which selectively lacks protein phosphatase activity and retains lipid phosphatase activity. Homozygous PtenY138L/Y138L mice die in utero before E10.5. Primary MEFs and thymocytes with only a single PtenY138L allele display normal low levels of AKT phosphorylation indicating effective regulation of PI3K signalling by endogenous PTEN-Y138L in vivo. Heterozygous Pten+/Y138L mice have reduced overall survival compared to wild type littermates and develop tumours in multiple organs. Our data imply that in addition to its lipid phosphatase activity, the protein phosphatase activity of PTEN is also required for normal embryonic development and tumour suppression. Competing Interest Statement The authors have declared no competing interest.

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europepmc
last seen: 2026-05-20T01:45:00.602351+00:00
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last seen: 2026-05-27T02:00:06.600101+00:00
License: CC-BY-4.0