DJ-1 linked parkinsonism (PARK7) is associated with Lewy body pathology

作者:Taipa Ricardo*; Pereira Conceicao; Reis Ines; Alonso Isabel; Bastos Lima Antonio; Melo Pires Manuel; Magalhaes Marina
来源:Brain, 2016, 139(6): 1680-1687.
DOI:10.1093/brain/aww080

摘要

Mutations in DJ-1 (PARK7) are a very rare cause of early-onset recessive ParkinsoA"s disease. Taipa et al. present the first neuropathological analysis of the brain of a patient with DJ-1 linked Parkinsonism. The results suggest that DJ-1 mutations are causative of alpha-synucleinopathy.Mutations in DJ-1 (PARK7) are a very rare cause of early-onset recessive ParkinsoA"s disease. Taipa et al. present the first neuropathological analysis of the brain of a patient with DJ-1 linked Parkinsonism. The results suggest that DJ-1 mutations are causative of alpha-synucleinopathy.Mutations in DJ-1 (encoded by PARK7) are a very rare cause of early-onset recessive Parkinson's disease. We describe a patient with early-onset parkinsonism, starting at the age of 22, with poor response to levodopa and additional features in progression (dystonia, pyramidal signs and dementia), who died when he was 49 years old. The neuropathological study showed severe substantia nigra and locus coeruleus neuronal loss, with diffuse Lewy body pathology (Lewy bodies, aberrant neurites, grain-like structures, spheroids and scattered glial pathology). Genetic analysis revealed a novel c.515T > A; p.L172Q mutation in the PARK7 gene. To evaluate the pathogenicity of this new mutation we explored DJ-1 expression levels in vitro showing a massive reduction in DJ-1 protein levels due to a highly unstable and rapidly degraded L172Q mutant. DJ-1 immunohistochemistry of brain tissue revealed no staining in our case. This is the first neuropathological report of a brain from DJ-1-linked parkinsonism that, although based on a single case study, suggests that DJ-1 mutations are causative of alpha-synucleinopathy. These results can help in the understanding of Parkinson's disease pathophysiology, promote research studies to increase the knowledge on the pathways involved in the neurodegeneration process, and pave the way for new therapeutic interventions.

  • 出版日期2016-6