Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
5596189 | The American Journal of Pathology | 2016 | 9 Pages |
Abstract
Kufor-Rakeb syndrome (KRS) is an autosomal recessive form of early-onset parkinsonism linked to the PARK9 locus. The causative gene for KRS is Atp13a2, which encodes a lysosomal type 5 P-type ATPase. We recently showed that KRS/PARK9-linked mutations lead to several lysosomal alterations, including reduced proteolytic processing of cathepsin D in vitro. However, it remains unknown how deficiency of Atp13a2 is connected to lysosomal impairments. To address this issue, we analyzed brain tissues of Atp13a2 conditional-knockout mice, which exhibited characteristic features of neuronal ceroid lipofuscinosis, including accumulation of lipofuscin positive for subunit c of mitochondrial ATP synthase, suggesting that a common pathogenic mechanism underlies both neuronal ceroid lipofuscinosis and Parkinson disease.
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Authors
Shigeto Sato, Masato Koike, Manabu Funayama, Junji Ezaki, Takahiro Fukuda, Takashi Ueno, Yasuo Uchiyama, Nobutaka Hattori,