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  • Calpains as novel players in the molecular pathogenesis of spinocerebellar ataxia type 17.

Calpains as novel players in the molecular pathogenesis of spinocerebellar ataxia type 17.

Cellular and molecular life sciences : CMLS (2022-04-29)
Jonasz Jeremiasz Weber, Stefanie Cari Anger, Priscila Pereira Sena, Rana Dilara Incebacak Eltemur, Chrisovalantou Huridou, Florian Fath, Caspar Gross, Nicolas Casadei, Olaf Riess, Huu Phuc Nguyen
摘要

Spinocerebellar ataxia type 17 (SCA17) is a neurodegenerative disease caused by a polyglutamine-encoding trinucleotide repeat expansion in the gene of transcription factor TATA box-binding protein (TBP). While its underlying pathomechanism is elusive, polyglutamine-expanded TBP fragments of unknown origin mediate the mutant protein's toxicity. Calcium-dependent calpain proteases are protagonists in neurodegenerative disorders. Here, we demonstrate that calpains cleave TBP, and emerging C-terminal fragments mislocalize to the cytoplasm. SCA17 cell and rat models exhibited calpain overactivation, leading to excessive fragmentation and depletion of neuronal proteins in vivo. Transcriptome analysis of SCA17 cells revealed synaptogenesis and calcium signaling perturbations, indicating the potential cause of elevated calpain activity. Pharmacological or genetic calpain inhibition reduced TBP cleavage and aggregation, consequently improving cell viability. Our work underlines the general significance of calpains and their activating pathways in neurodegenerative disorders and presents these proteases as novel players in the molecular pathogenesis of SCA17.

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Sigma-Aldrich
抗聚谷氨酰胺扩展疾病标志物抗体,克隆5TF1-1C2, ascites fluid, clone 5TF1-1C2, Chemicon®
Sigma-Aldrich
钙蛋白酶-1,来源于猪红细胞, Calpain-1, Porcine Erythrocytes, is a native calpain-1. A heterodimeric cysteine proteinase with low Ca2+ requirement (EC₅₀ = 2 µM).