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Published on: June 6, 2017
GRK2-mediated AKT activation controls cell cycle progression and G2 checkpoint in a p53-dependent manner
Verónica Rivas1,2, Teresa González-Muñoz1,2, Ángela Albitre1,2
1Departamento de Biología Molecular, IUBM-UAM and Centro de Biología Molecular "Severo Ochoa" (UAM-CSIC), Madrid, Spain.
Abstract:
Cell cycle checkpoints, activated by stressful events, halt the cell cycle progression, and prevent the transmission of damaged DNA. These checkpoints prompt cell repair but also trigger cell death if damage persists. Decision-making between these responses is multifactorial and context-dependent, with the tumor suppressor p53 playing a central role. In many tumor cells, p53 alterations lead to G1/S checkpoint loss and the weakening of the G2 checkpoint, rendering cell viability dependent on the strength of the latter through mechanisms not fully characterized. Cells with a strong pro-survival drive can evade cell death despite substantial DNA lesions. Deciphering the integration of survival pathways with p53-dependent and -independent mechanisms governing the G2/M transition is crucial for understanding G2 arrest functionality and predicting tumor cell response to chemotherapy. The serine/threonine kinase GRK2 emerges as a signaling node in cell cycle modulation. In cycling cells, but not in G2 checkpoint-arrested cells, GRK2 protein levels decline during G2/M transition through a process triggered by CDK2-dependent phosphorylation of GRK2 at the S670 residue and Mdm2 ubiquitination. We report now that this downmodulation in G2 prevents the unscheduled activation of the PI3K/AKT pathway, allowing cells to progress into mitosis. Conversely, higher GRK2 levels lead to tyrosine phosphorylation by the kinase c-Abl, promoting the direct association of GRK2 with the p85 regulatory subunit of PI3K and AKT activation in a GRK2 catalytic-independent manner. Hyperactivation of AKT is conditioned by p53's scaffolding function, triggering FOXO3a phosphorylation, impaired Cyclin B1 accumulation, and CDK1 activation, causing a G2/M transition delay. Upon G2 checkpoint activation, GRK2 potentiates early arrest independently of p53 through AKT activation. However, its ability to overcome the G2 checkpoint in viable conditions depends on p53. Our results suggest that integrating the GRK2/PI3K/AKT axis with non-canonical functions of p53 might confer a survival advantage to tumor cells.
Insights
Cell cycle checkpoints halt DNA damage progression. GRK2 downmodulation prevents PI3K/AKT activation, allowing mitosis, while p53 integrates GRK2 signaling for tumor cell survival.
Area of Science:
- Cell Biology
- Molecular Oncology
- Signal Transduction
Background:
- Cell cycle checkpoints prevent damaged DNA transmission, initiating repair or cell death.
- Tumor cells often exhibit altered p53, leading to G1/S checkpoint loss and weakened G2 checkpoints.
- Understanding G2/M transition regulation is crucial for predicting chemotherapy response.
Purpose of the Study:
- To investigate the role of GRK2 in G2/M cell cycle transition and its interplay with p53.
- To elucidate mechanisms by which GRK2 influences survival pathways like PI3K/AKT.
- To determine how GRK2 and p53 interactions affect G2 arrest and tumor cell viability.
Main Methods:
- Analysis of GRK2 protein levels during cell cycle progression and G2 arrest.
- Investigating GRK2 phosphorylation, ubiquitination, and interactions with CDK2 and Mdm2.
- Assessing GRK2's effect on PI3K/AKT pathway activation, c-Abl activity, and p53-dependent signaling.
Main Results:
- GRK2 protein levels decrease during G2/M transition in cycling cells via CDK2/Mdm2, preventing premature PI3K/AKT activation.
- Elevated GRK2, through c-Abl, activates PI3K/AKT independently of its kinase activity, promoting G2/M delay.
- p53 scaffolding function modulates AKT hyperactivation, impacting FOXO3a, Cyclin B1, and CDK1, influencing G2 arrest and survival.
Conclusions:
- GRK2 downmodulation is essential for timely G2/M progression by inhibiting PI3K/AKT.
- GRK2 potentiates G2 arrest via AKT activation, but overcoming it for survival relies on p53.
- The GRK2/PI3K/AKT axis and non-canonical p53 functions offer potential survival advantages to tumor cells.
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