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Merck
CN
  • Lysosomal lipid alterations caused by glucocerebrosidase deficiency promote lysosomal dysfunction, chaperone-mediated-autophagy deficiency, and alpha-synuclein pathology.

Lysosomal lipid alterations caused by glucocerebrosidase deficiency promote lysosomal dysfunction, chaperone-mediated-autophagy deficiency, and alpha-synuclein pathology.

NPJ Parkinson's disease (2022-10-07)
Alba Navarro-Romero, Irene Fernandez-Gonzalez, Jordi Riera, Marta Montpeyo, Merce Albert-Bayo, Tresa Lopez-Royo, Pablo Castillo-Sanchez, Clara Carnicer-Caceres, Jose Antonio Arranz-Amo, Laura Castillo-Ribelles, Eddie Pradas, Josefina Casas, Miquel Vila, Marta Martinez-Vicente
摘要

Mutations in the GBA gene that encodes the lysosomal enzyme β-glucocerebrosidase (GCase) are a major genetic risk factor for Parkinson's disease (PD). In this study, we generated a set of differentiated and stable human dopaminergic cell lines that express the two most prevalent GBA mutations as well as GBA knockout cell lines as a in vitro disease modeling system to study the relationship between mutant GBA and the abnormal accumulation of α-synuclein. We performed a deep analysis of the consequences triggered by the presence of mutant GBA protein and the loss of GCase activity in different cellular compartments, focusing primarily on the lysosomal compartment, and analyzed in detail the lysosomal activity, composition, and integrity. The loss of GCase activity generates extensive lysosomal dysfunction, promoting the loss of activity of other lysosomal enzymes, affecting lysosomal membrane stability, promoting intralysosomal pH changes, and favoring the intralysosomal accumulation of sphingolipids and cholesterol. These local events, occurring only at a subcellular level, lead to an impairment of autophagy pathways, particularly chaperone-mediated autophagy, the main α-synuclein degradative pathway. The findings of this study highlighted the role of lysosomal function and lipid metabolism in PD and allowed us to describe a molecular mechanism to understand how mutations in GBA can contribute to an abnormal accumulation of different α-synuclein neurotoxic species in PD pathology.

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Sigma-Aldrich
单克隆抗 β-肌动蛋白抗体 小鼠抗, clone AC-15, ascites fluid
Sigma-Aldrich
氯喹 二磷酸盐, powder or crystals, 98.5-101.0% (EP)
Sigma-Aldrich
亮肽素, microbial, ≥90% (HPLC)
Sigma-Aldrich
氰化羰基-3-氯苯腙, ≥97% (TLC), powder
Sigma-Aldrich
3-甲基腺嘌呤, autophagy inhibitor
Sigma-Aldrich
抗-聚集α-突触核蛋白抗体,克隆5G4, clone 5G4, from mouse, purified by affinity chromatography
Sigma-Aldrich
AR7, ≥98% (HPLC)