多巴胺能
帕金森病
多巴胺
鞘脂
平衡
5-羟色胺能
内分泌学
内科学
帕金森病
化学
神经科学
生物
细胞生物学
医学
疾病
受体
血清素
作者
Yachao He,Ibrahim Kaya,Mohammadreza Shariatgorji,Johan Lundkvist,Lars U. Wahlberg,Anna Nilsson,Dejan Mamula,Ján Kehr,Justyna Zarȩba-Pasławska,Henrik Biverstål,Karima Chergui,Xiaoqun Zhang,Per E. Andrén,Per Svenningsson
标识
DOI:10.1038/s41467-023-41539-5
摘要
Prosaposin (PSAP) modulates glycosphingolipid metabolism and variants have been linked to Parkinson's disease (PD). Here, we find altered PSAP levels in the plasma, CSF and post-mortem brain of PD patients. Altered plasma and CSF PSAP levels correlate with PD-related motor impairments. Dopaminergic PSAP-deficient (cPSAPDAT) mice display hypolocomotion and depression/anxiety-like symptoms with mildly impaired dopaminergic neurotransmission, while serotonergic PSAP-deficient (cPSAPSERT) mice behave normally. Spatial lipidomics revealed an accumulation of highly unsaturated and shortened lipids and reduction of sphingolipids throughout the brains of cPSAPDAT mice. The overexpression of α-synuclein via AAV lead to more severe dopaminergic degeneration and higher p-Ser129 α-synuclein levels in cPSAPDAT mice compared to WT mice. Overexpression of PSAP via AAV and encapsulated cell biodelivery protected against 6-OHDA and α-synuclein toxicity in wild-type rodents. Thus, these findings suggest PSAP may maintain dopaminergic lipid homeostasis, which is dysregulated in PD, and counteract experimental parkinsonism.
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