Fluctuations in AKT and PTEN Activity Are Linked by the E3 Ubiquitin Ligase cCBL

3-Poly-phosphoinositides (PIP ) regulate cell survival, division, and migration. Both PI3-kinase (phosphoinositide-3-kinase) and PTEN (phosphatase and tensin-homolog in chromosome 10) control PIP levels, but the mechanisms connecting PI3-kinase and PTEN are unknown. Using non-transformed cells, the...

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Veröffentlicht in:Cells (Basel, Switzerland) Switzerland), 2021-10, Vol.10 (11), p.2803
Hauptverfasser: Olazábal-Morán, Manuel, Sánchez-Ortega, Miriam, Martínez-Muñoz, Laura, Hernández, Carmen, Rodríguez, Manuel S, Mellado, Mario, Carrera, Ana C
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Sprache:eng
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Zusammenfassung:3-Poly-phosphoinositides (PIP ) regulate cell survival, division, and migration. Both PI3-kinase (phosphoinositide-3-kinase) and PTEN (phosphatase and tensin-homolog in chromosome 10) control PIP levels, but the mechanisms connecting PI3-kinase and PTEN are unknown. Using non-transformed cells, the activation kinetics of PTEN and of the PIP -effector AKT were examined after the addition of growth factors. Both epidermal growth factor and serum induced the early activation of AKT and the simultaneous inactivation of PTEN (at ~5 min). This PIP /AKT peak was followed by a general reduction in AKT activity coincident with the recovery of PTEN phosphatase activity (at ~10-15 min). Subsequent AKT peaks and troughs followed. The fluctuation in AKT activity was linked to that of PTEN; PTEN reconstitution in PTEN-null cells restored AKT fluctuations, while PTEN depletion in control cells abrogated them. The analysis of PTEN activity fluctuations after the addition of growth factors showed its inactivation at ~5 min to be simultaneous with its transient ubiquitination, which was regulated by the ubiquitin E3 ligase cCBL (casitas B-lineage lymphoma proto-oncogene). Protein-protein interaction analysis revealed cCBL to be brought into the proximity of PTEN in a PI3-kinase-dependent manner. These results reveal a mechanism for PI3-kinase/PTEN crosstalk and suggest that cCBL could be new target in strategies designed to modulate PTEN activity in cancer.
ISSN:2073-4409
2073-4409
DOI:10.3390/cells10112803