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Published on: August 2, 2021
The pseudo-caspase FLIP(L) regulates cell fate following p53 activation
Andrea Lees1, Alexander J McIntyre1, Nyree T Crawford1
1Patrick G Johnston Centre for Cancer Research, Queen's University Belfast, Belfast, Northern Ireland BT9 7BL, United Kingdom.
Abstract:
p53 is the most frequently mutated, well-studied tumor-suppressor gene, yet the molecular basis of the switch from p53-induced cell-cycle arrest to apoptosis remains poorly understood. Using a combination of transcriptomics and functional genomics, we unexpectedly identified a nodal role for the caspase-8 paralog and only human pseudo-caspase, FLIP(L), in regulating this switch. Moreover, we identify FLIP(L) as a direct p53 transcriptional target gene that is rapidly up-regulated in response to Nutlin-3A, an MDM2 inhibitor that potently activates p53. Genetically or pharmacologically inhibiting expression of FLIP(L) using siRNA or entinostat (a clinically relevant class-I HDAC inhibitor) efficiently promoted apoptosis in colorectal cancer cells in response to Nutlin-3A, which otherwise predominantly induced cell-cycle arrest. Enhanced apoptosis was also observed when entinostat was combined with clinically relevant, p53-activating chemotherapy in vitro, and this translated into enhanced in vivo efficacy. Mechanistically, FLIP(L) inhibited p53-induced apoptosis by blocking activation of caspase-8 by the TRAIL-R2/DR5 death receptor; notably, this activation was not dependent on receptor engagement by its ligand, TRAIL. In the absence of caspase-8, another of its paralogs, caspase-10 (also transcriptionally up-regulated by p53), induced apoptosis in Nutlin-3A-treated, FLIP(L)-depleted cells, albeit to a lesser extent than in caspase-8-proficient cells. FLIP(L) depletion also modulated transcription of canonical p53 target genes, suppressing p53-induced expression of the cell-cycle regulator p21 and enhancing p53-induced up-regulation of proapoptotic PUMA. Thus, even in the absence of caspase-8/10, FLIP(L) silencing promoted p53-induced apoptosis by enhancing PUMA expression. Thus, we report unexpected, therapeutically relevant roles for FLIP(L) in determining cell fate following p53 activation.
Insights
The tumor suppressor p53
Area of Science:
- Molecular Biology
- Cancer Research
- Cell Death Signaling
Background:
- The tumor suppressor p53's role in cell fate decisions, switching between cell-cycle arrest and apoptosis, is not fully understood.
- FLIP(L), a caspase-8 paralog, has an uncharacterized function in this p53-mediated switch.
- Nutlin-3A, an MDM2 inhibitor, activates p53 and is a key tool for studying p53-induced responses.
Purpose of the Study:
- To elucidate the molecular mechanisms governing the p53-induced switch between cell-cycle arrest and apoptosis.
- To identify novel regulators of p53-mediated cell fate decisions.
- To explore therapeutic strategies for enhancing p53-induced apoptosis in cancer.
Main Methods:
- Transcriptomics and functional genomics to identify key regulatory genes.
- siRNA and pharmacological inhibition (entinostat) to modulate FLIP(L) expression.
- In vitro and in vivo experiments using colorectal cancer cells and p53-activating agents (Nutlin-3A, chemotherapy).
Main Results:
- FLIP(L) was identified as a direct p53 target gene, rapidly upregulated by Nutlin-3A.
- Inhibiting FLIP(L) expression promoted apoptosis in response to Nutlin-3A, shifting the balance from cell-cycle arrest.
- FLIP(L) inhibition enhanced apoptosis in combination with chemotherapy in vitro and improved in vivo efficacy.
- FLIP(L) blocks caspase-8 activation and modulates p53 target genes like p21 and PUMA.
Conclusions:
- FLIP(L) plays a critical, unexpected role in determining cell fate following p53 activation.
- Targeting FLIP(L) represents a promising therapeutic strategy to enhance p53-induced apoptosis in cancer.
- FLIP(L) silencing promotes apoptosis by enhancing PUMA expression, even without caspase-8/10 activation.
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