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Updated: Sep 27, 2026

Caspase-3 Activity in the Rat Amygdala Measured by Spectrofluorometry After Myocardial Infarction
Published on: January 12, 2016
Caspase-3 regulates RNA splicing and mitochondrial dynamics in microglia during Parkinson's disease
Rafael Medina-Guzmán1, Bazhena Bahatyrevich-Kharitonik1, Marie-Kim St-Pierre2
1Instituto de Biomedicina de Sevilla (IBiS, Hospital Universitario Virgen del Rocío/CSIC/Universidad de Sevilla), Seville, Spain.
Abstract:
Caspase-3, a cysteine-aspartic protease canonically known for its role in apoptotic cell death, has been implicated in several non-apoptotic functions, particularly in microglia, the brain-resident macrophages. These novel functions appear to depend on distinct levels of caspase-3 activation; however, the role of basal caspase-3 activity remains unclear. Here, we show that basal caspase-3 regulates RNA splicing in microglia, and its deficiency in a Parkinson´s disease (PD) model leads to splicing dysregulation. Loss of basal caspase-3 activity also increases double-stranded RNA (dsRNA) accumulation, inducing a type I interferon response. Additionally, caspase-3 deficiency impairs mitochondrial respiration, reduces ATP production, and causes sex-specific mitochondrial abnormalities, predominantly in female microglia. Together, our findings uncover a non-apoptotic, homeostatic role for basal caspase-3 activity in microglia. Its disruption, such as in PD, may drive key molecular features of neuroinflammation and neurodegeneration, positioning caspase-3 as a critical regulator of microglial function in health and disease.
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