Intestinal infection triggers Parkinson’s disease-like symptoms in Pink1−/− mice

品脱1 帕金 帕金森病 疾病 医学 内科学
作者
Diana Matheoud,Tyler Cannon,Aurore N. Voisin,Anna‐Maija Penttinen,Lauriane Ramet,Ahmed M. Fahmy,Charles Ducrot,Annie Laplante,Marie‐Josée Bourque,Lei Zhu,Romain Cayrol,Armelle Le Campion,Heidi M. McBride,Samantha Gruenheid,Louis‐Éric Trudeau,Michel Desjardins
出处
期刊:Nature [Nature Portfolio]
卷期号:571 (7766): 565-569 被引量:513
标识
DOI:10.1038/s41586-019-1405-y
摘要

Parkinson's disease is a neurodegenerative disorder with motor symptoms linked to the loss of dopaminergic neurons in the substantia nigra compacta. Although the mechanisms that trigger the loss of dopaminergic neurons are unclear, mitochondrial dysfunction and inflammation are thought to have key roles1,2. An early-onset form of Parkinson's disease is associated with mutations in the PINK1 kinase and PRKN ubiquitin ligase genes3. PINK1 and Parkin (encoded by PRKN) are involved in the clearance of damaged mitochondria in cultured cells4, but recent evidence obtained using knockout and knockin mouse models have led to contradictory results regarding the contributions of PINK1 and Parkin to mitophagy in vivo5-8. It has previously been shown that PINK1 and Parkin have a key role in adaptive immunity by repressing presentation of mitochondrial antigens9, which suggests that autoimmune mechanisms participate in the aetiology of Parkinson's disease. Here we show that intestinal infection with Gram-negative bacteria in Pink1-/- mice engages mitochondrial antigen presentation and autoimmune mechanisms that elicit the establishment of cytotoxic mitochondria-specific CD8+ T cells in the periphery and in the brain. Notably, these mice show a sharp decrease in the density of dopaminergic axonal varicosities in the striatum and are affected by motor impairment that is reversed after treatment with L-DOPA. These data support the idea that PINK1 is a repressor of the immune system, and provide a pathophysiological model in which intestinal infection acts as a triggering event in Parkinson's disease, which highlights the relevance of the gut-brain axis in the disease10.
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