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Updated: Dec 29, 2025

Activation of Apoptosis by Cytoplasmic Microinjection of Cytochrome c
Published on: June 29, 2011
SIVA-1 regulates apoptosis and synaptic function by modulating XIAP interaction with the death receptor antagonist
Elena Coccia1,2,3, Laura Planells-Ferrer1,2,3, Raquel Badillos-Rodríguez1,2,3
1Cell Signaling and Apoptosis Group, Vall d'Hebron Research Institute (VHIR), 08035, Barcelona, Spain.
Abstract:
The long isoform of Fas apoptosis inhibitory molecule (FAIM-L) is a neuron-specific death receptor antagonist that modulates apoptotic cell death and mechanisms of neuronal plasticity. FAIM-L exerts its antiapoptotic action by binding to X-linked inhibitor of apoptosis protein (XIAP), an inhibitor of caspases, which are the main effectors of apoptosis. XIAP levels are regulated by the ubiquitin-proteasome pathway. FAIM-L interaction with XIAP prevents the ubiquitination and degradation of the latter, thereby allowing it to inhibit caspase activation. This interaction also modulates non-apoptotic functions of caspases, such as the endocytosis of AMPA receptor (AMPAR) in hippocampal long-term depression (LTD). The molecular mechanism of action exerted by FAIM-L is unclear since the consensus binding motifs are still unknown. Here, we performed a two-hybrid screening to discover novel FAIM-L-interacting proteins. We found a functional interaction of SIVA-1 with FAIM-L. SIVA-1 is a proapoptotic protein that has the capacity to interact with XIAP. We describe how SIVA-1 regulates FAIM-L function by disrupting the interaction of FAIM-L with XIAP, thereby promoting XIAP ubiquitination, caspase-3 activation and neuronal death. Furthermore, we report that SIVA-1 plays a role in receptor internalization in synapses. SIVA-1 is upregulated upon chemical LTD induction, and it modulates AMPAR internalization via non-apoptotic activation of caspases. In summary, our findings uncover SIVA-1 as new functional partner of FAIM-L and demonstrate its role as a regulator of caspase activity in synaptic function.
Insights
Fas apoptosis inhibitory molecule-like (FAIM-L) protects neurons by inhibiting caspases via XIAP. SIVA-1 disrupts this, promoting neuronal death and synaptic changes.
Area of Science:
- Molecular and Cellular Neuroscience
- Apoptosis and Cell Death Signaling
- Synaptic Plasticity Mechanisms
Background:
- Fas apoptosis inhibitory molecule-like (FAIM-L) is a neuron-specific antagonist of apoptotic cell death.
- FAIM-L inhibits caspases by binding to X-linked inhibitor of apoptosis protein (XIAP), preventing XIAP degradation.
- This interaction also influences non-apoptotic caspase functions, including AMPA receptor (AMPAR) endocytosis during long-term depression (LTD).
Purpose of the Study:
- To identify novel FAIM-L interacting proteins using a two-hybrid screening.
- To elucidate the molecular mechanism by which FAIM-L regulates XIAP and caspase activity.
- To investigate the role of novel interacting proteins in synaptic function and neuronal plasticity.
Main Methods:
- Yeast two-hybrid screening to identify FAIM-L interacting partners.
- Co-immunoprecipitation and Western blotting to confirm protein interactions and ubiquitination.
- Caspase activity assays and assessment of AMPAR internalization in neuronal cultures.
Main Results:
- Identified SIVA-1 as a novel functional binding partner of FAIM-L.
- Demonstrated that SIVA-1 disrupts the FAIM-L-XIAP interaction, leading to XIAP ubiquitination and caspase-3 activation.
- Showed SIVA-1 modulates AMPAR internalization during chemical LTD via non-apoptotic caspase activation.
Conclusions:
- SIVA-1 acts as a novel regulator of FAIM-L function, promoting neuronal death by disrupting the FAIM-L-XIAP complex.
- SIVA-1 plays a critical role in synaptic plasticity, specifically AMPAR internalization, through caspase-dependent mechanisms.
- These findings reveal SIVA-1 as a key player in modulating both apoptotic and non-apoptotic signaling pathways in neurons.
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