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Cyclase-associated protein 2 gene delivery: A potential multi-target approach for preventing synaptic failure in
Ramona Stringhi1, Silvia Pelucchi1, Laura D'Andrea1
1Department of Pharmacological and Biomolecular Sciences "Rodolfo Paoletti," Università degli Studi di Milano, Via Giuseppe Balzaretti 9, 20133 Milan, Italy.
Abstract:
Alzheimer's disease (AD) is marked by synaptic failure, with actin cytoskeleton alterations playing a key role in its pathogenesis. Cofilin, a regulator of actin dynamics in dendritic spines, forms cofilin-actin rods upon exposure to amyloid-β (Aβ) oligomers, contributing to synaptic loss. Cyclase-associated protein 2 (CAP2) is crucial for regulating cofilin activity. During long-term potentiation, CAP2 dimerization is relevant for cofilin translocation to spines required for spine remodeling. In AD, CAP2 is downregulated, thus disrupting synaptic CAP2/cofilin complexes. To investigate the neuroprotective potential of CAP2 overexpression in preventing Aβ-induced synaptic dysfunction, we used adeno-associated virus serotype 9 (AAV) gene delivery to elevate CAP2 levels in APP/PS1 mice-a model of amyloid pathology-starting from the asymptomatic stage. APP/PS1 animals received bilateral stereotaxic injection of either AAV expressing CAP2 or a control AAV. This approach preserved synaptic CAP2/cofilin interaction, maintained synaptic plasticity pathways, and sustained cognitive function. CAP2 overexpression reduced cofilin-actin rod formation and mitigated tau abnormalities. Notably, CAP2 is present in cofilin-actin rods, and its dimerization is required to prevent Aβ-driven synaptic loss but not to protect neurons from rod formation. These findings highlight CAP2 upregulation as a promising strategy to enhance neuronal resilience and counteract Aβ synaptic toxicity in AD.
Insights
Overexpressing Cyclase-Associated Protein 2 (CAP2) in Alzheimer's disease (AD) models prevents synaptic failure by maintaining synaptic plasticity and cognitive function, counteracting amyloid-beta toxicity.
Area of Science:
- Neuroscience
- Molecular Biology
- Cell Biology
Background:
- Alzheimer's disease (AD) involves synaptic failure linked to actin cytoskeleton changes.
- Amyloid-beta (Aβ) oligomers induce cofilin-actin rods, causing synaptic loss.
- Cyclase-associated protein 2 (CAP2) regulates cofilin activity and is downregulated in AD.
Purpose of the Study:
- To investigate the neuroprotective effects of CAP2 overexpression against Aβ-induced synaptic dysfunction in an AD mouse model.
- To determine if elevated CAP2 levels can preserve synaptic integrity and cognitive function.
Main Methods:
- Adeno-associated virus serotype 9 (AAV) gene delivery was used to overexpress CAP2 in APP/PS1 mice.
- Mice received stereotactic injections of AAV-CAP2 or control AAV starting at the asymptomatic stage.
- Synaptic function, cofilin-actin rod formation, tau pathology, and cognitive performance were assessed.
Main Results:
- CAP2 overexpression preserved synaptic CAP2/cofilin interactions and synaptic plasticity pathways.
- Cognitive function was sustained in APP/PS1 mice with elevated CAP2 levels.
- Overexpression of CAP2 reduced cofilin-actin rod formation and mitigated tau abnormalities.
Conclusions:
- CAP2 upregulation enhances neuronal resilience against Aβ synaptic toxicity in Alzheimer's disease.
- Maintaining CAP2/cofilin complexes is crucial for preventing Aβ-driven synaptic loss.
- CAP2 shows promise as a therapeutic strategy for AD.
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