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Wee1 Rather Than Plk1 Is Inhibited by AZD1775 at Therapeutically Relevant Concentrations
Angela Flavia Serpico1,2, Giuseppe D'Alterio3,4, Cinzia Vetrei5,6
1CEINGE Biotecnologie Avanzate, 80145 Naples, Italy. angelaflavia.serpico@hotmail.it.
Abstract:
Wee1 kinase is an inhibitor of cyclin-dependent kinase (cdk)s, crucial cell cycle progression drivers. By phosphorylating cdk1 at tyrosine 15, Wee1 inhibits activation of cyclin B-cdk1 (Cdk1), preventing cells from entering mitosis with incompletely replicated or damaged DNA. Thus, inhibiting Wee1, alone or in combination with DNA damaging agents, can kill cancer cells by mitotic catastrophe, a tumor suppressive response that follows mitosis onset in the presence of under-replicated or damaged DNA. AZD1775, an orally available Wee1 inhibitor, has entered clinical trials for cancer treatment following this strategy, with promising results. Recently, however, AZD1775 has been shown to inhibit also the polo-like kinase homolog Plk1 in vitro, casting doubts on its mechanism of action. Here we asked whether, in the clinically relevant concentration range, AZD1775 inhibited Wee1 or Plk1 in transformed and non-transformed human cells. We found that in the clinically relevant, nanomolar, concentration range AZD1775 inhibited Wee1 rather than Plk1. In addition, AZD1775 treatment accelerated mitosis onset overriding the DNA replication checkpoint and hastened Plk1-dependent phosphorylation. On the contrary selective Plk1 inhibition exerted opposite effects. Thus, at therapeutic concentrations, AZD1775 inhibited Wee1 rather than Plk1. This information will help to better interpret results obtained by using AZD1775 both in the clinical and experimental settings and provide a stronger rationale for combination therapies.
Insights
AZD1775, a Wee1 kinase inhibitor, effectively targets Wee1 at nanomolar concentrations relevant to cancer therapy. This clarifies its mechanism of action, supporting its use in combination treatments for improved efficacy.
Area of Science:
- Cell Biology
- Molecular Oncology
- Cancer Therapeutics
Background:
- Wee1 kinase regulates cell cycle progression by inhibiting cyclin-dependent kinases (cdks).
- Inhibition of Wee1 can induce mitotic catastrophe, a strategy explored in cancer treatment.
- AZD1775 is an orally available Wee1 inhibitor investigated in clinical trials.
Purpose of the Study:
- To determine whether AZD1775 inhibits Wee1 or Plk1 at clinically relevant concentrations.
- To clarify the mechanism of action of AZD1775 in human cells.
Main Methods:
- Treatment of transformed and non-transformed human cells with AZD1775.
- Assessment of Wee1 and Plk1 inhibition at nanomolar concentrations.
- Analysis of cell cycle progression and phosphorylation events.
Main Results:
- AZD1775 inhibited Wee1 kinase, not Plk1, at clinically relevant nanomolar concentrations.
- AZD1775 accelerated mitosis onset, overriding the DNA replication checkpoint.
- Selective Plk1 inhibition produced opposite effects compared to AZD1775.
Conclusions:
- At therapeutic concentrations, AZD1775 functions as a Wee1 inhibitor.
- This finding aids in interpreting AZD1775's clinical and experimental results.
- Provides a stronger rationale for combination therapies involving AZD1775.
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