4.7 Article

Glucocerebrosidase deficiency in substantia nigra of parkinson disease brains

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ANNALS OF NEUROLOGY
卷 72, 期 3, 页码 455-463

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WILEY-BLACKWELL
DOI: 10.1002/ana.23614

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资金

  1. Wellcome Trust/Medical Research Council (MRC) [WT089698]
  2. Parkinson's UK
  3. Kattan Trust
  4. The Great Ormond Street Children's Charity
  5. Alzheimers Research UK [ART-PPG2011A-14] Funding Source: researchfish
  6. Medical Research Council [G0701075, MC_G1000735] Funding Source: researchfish
  7. Parkinson's UK [G-1104, J-0804, G-0907] Funding Source: researchfish
  8. MRC [G0701075, MC_G1000735] Funding Source: UKRI

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Objective: Mutations in the glucocerebrosidase gene (GBA) represent a significant risk factor for developing Parkinson disease (PD). We investigated the enzymatic activity of glucocerebrosidase (GCase) in PD brains carrying heterozygote GBA mutations (PD+GBA) and sporadic PD brains. Methods: GCase activity was measured using a fluorescent assay in cerebellum, frontal cortex, putamen, amygdala, and substantia nigra of PD+GBA (n = 914) and sporadic PD brains (n = 1214). Protein expression of GCase and other lysosomal proteins was determined by western blotting. The relation between GCase, a-synuclein, and mitochondria function was also investigated in vitro. Results: A significant decrease in GCase activity was observed in all PD+GBA brain areas except the frontal cortex. The greatest deficiency was in the substantia nigra (58% decrease; p < 0.01). GCase activity was also significantly decreased in the substantia nigra (33% decrease; p < 0.05) and cerebellum (24% decrease; p < 0.05) of sporadic PD brains. GCase protein expression was lower in PD+GBA and PD brains, whereas increased C/EBP homologous protein and binding immunoglobulin protein levels indicated that the unfolded protein response was activated. Elevated a-synuclein levels or PTEN-induced putative kinase 1 deficiency in cultured cells had a significant effect on GCase protein levels. Interpretation: GCase deficiency in PD brains with GBA mutations is a combination of decreased catalytic activity and reduced protein levels. This is most pronounced in the substantia nigra. Biochemical changes involved in PD pathogenesis affect wild-type GCase protein expression in vitro, and these could be contributing factors to the GCase deficiency observed in sporadic PD brains. ANN NEUROL 2012;72:455463.

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