Lipid and immune abnormalities causing age-dependent neurodegeneration and Parkinson’s disease

被引:0
作者
Penelope J. Hallett
Simone Engelender
Ole Isacson
机构
[1] Neuroregeneration Research Institute,Present Address: Department of Biochemistry
[2] McLean Hospital/Harvard Medical School,undefined
[3] Rappaport Faculty of Medicine and Research Institute,undefined
[4] Technion-Israel Institute of Technology,undefined
来源
Journal of Neuroinflammation | / 16卷
关键词
Lipids; Immune; Inflammation; Neurons; Microglia; Astroglia; Lysosome; GBA; α-Synuclein; Tau; Apolipoprotein; APOE;
D O I
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学科分类号
摘要
This article describes pathogenic concepts and factors, in particular glycolipid abnormalities, that create cell dysfunction and synaptic loss in neurodegenerative diseases. By phenocopying lysosomal storage disorders, such as Gaucher disease and related disorders, age- and dose-dependent changes in glycolipid cell metabolism can lead to Parkinson’s disease and related dementias. Recent results show that perturbation of sphingolipid metabolism can precede or is a part of abnormal protein handling in both genetic and idiopathic Parkinson’s disease and Lewy body dementia. In aging and genetic predisposition with lipid disturbance, α-synuclein’s normal vesicular and synaptic role may be detrimentally shifted toward accommodating and binding such lipids. Specific neuronal glycolipid, protein, and vesicular interactions create potential pathophysiology that is amplified by astroglial and microglial immune mechanisms resulting in neurodegeneration. This perspective provides a new logic for therapeutic interventions that do not focus on protein aggregation, but rather provides a guide to the complex biology and the common sequence of events that lead to age-dependent neurodegenerative disorders.
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[51]  
Zarranz JJ(2014)Reduced glucocerebrosidase is associated with increased alpha-synuclein in sporadic Parkinson’s disease Brain 137 834-14
[52]  
Alegre J(2018)Glycosphingolipid levels and glucocerebrosidase activity are altered in normal aging of the mouse brain Neurobiol Aging 67 189-107.e110
[53]  
Gomez-Esteban JC(2011)alpha-Synuclein occurs physiologically as a helically folded tetramer that resists aggregation Nature 477 107-564
[54]  
Lezcano E(2018)Abrogating native alpha-synuclein tetramers in mice causes a L-DOPA-responsive motor syndrome closely resembling Parkinson’s disease Neuron 100 75-162
[55]  
Ros R(2017)The threshold theory for Parkinson’s disease Trends Neurosci 40 4-7
[56]  
Ampuero I(2018)Reversible conformational conversion of alpha-synuclein into toxic assemblies by glucosylceramide Neuron 97 92-52
[57]  
Vidal L(2015)Sustained systemic glucocerebrosidase inhibition induces brain alpha-synuclein aggregation, microglia and complement C1q activation in mice Antioxid Redox Signal 23 550-2660
[58]  
Hoenicka J(2014)Neuroinflammation and alpha-synuclein accumulation in response to glucocerebrosidase deficiency are accompanied by synaptic dysfunction Mol Genet Metab 111 152-447
[59]  
Rodriguez O(2013)Glucocerebrosidase inhibition causes mitochondrial dysfunction and free radical damage Neurochem Int 62 1-803
[60]  
Atares B(2011)Gaucher disease glucocerebrosidase and alpha-synuclein form a bidirectional pathogenic loop in synucleinopathies Cell 146 37-783