Astrocyte adenosine deaminase loss increases motor neuron toxicity in amyotrophic lateral sclerosis

被引:76
作者
Allen, Scott P. [1 ]
Hall, Benjamin [1 ]
Castelli, Lydia M. [1 ]
Francis, Laura [2 ]
Woof, Ryan [1 ]
Siskos, Alexandros P. [3 ]
Kouloura, Eirini [3 ]
Gray, Elizabeth [4 ]
Thompson, Alexander G. [4 ]
Talbot, Kevin [4 ]
Higginbottom, Adrian [1 ]
Myszczynska, Monika [1 ]
Allen, Chloe F. [1 ]
Stopford, Matthew J. [1 ]
Hemingway, Jordan [1 ]
Bauer, Claudia S. [1 ]
Webster, Christopher P. [1 ]
De Vos, Kurt J. [1 ]
Turner, Martin R. [4 ]
Keun, Hector C. [3 ]
Hautbergue, Guillaume M. [1 ]
Ferraiuolo, Laura [1 ]
Shaw, Pamela J. [1 ]
机构
[1] Univ Sheffield, Sheffield Inst Translat Neurosci SITraN, 385 Glossop Rd, Sheffield S10 2HQ, S Yorkshire, England
[2] Univ Exeter, Living Syst Inst, Stocker Rd, Exeter EX4 4QD, Devon, England
[3] Imperial Coll London, Dept Surg & Canc, Hammersmith Hosp Campus, London W12 0NN, England
[4] Univ Oxford, John Radcliffe Hosp, Nuffield Dept Clin Neurosci, West Wing Level 6, Oxford OX3 9DU, England
基金
欧洲研究理事会; 英国医学研究理事会;
关键词
ALS; C9orf72; metabolism: inosine: adenosine deaminase; MOUSE MODEL; MITOCHONDRIAL-FUNCTION; HEXANUCLEOTIDE REPEAT; AEROBIC GLYCOLYSIS; CELLULAR-MODEL; A(2A) RECEPTOR; URIC-ACID; DISEASE; ALS; SURVIVAL;
D O I
10.1093/brain/awy353
中图分类号
R74 [神经病学与精神病学];
学科分类号
摘要
As clinical evidence supports a negative impact of dysfunctional energy metabolism on the disease progression in amyotrophic lateral sclerosis, it is vital to understand how the energy metabolic pathways are altered and whether they can be restored to slow disease progression. Possible approaches include increasing or rerouting catabolism of alternative fuel sources to supplement the glycolytic and mitochondrial pathways such as glycogen, ketone bodies and nucleosides. To analyse the basis of the catabolic defect in amyotrophic lateral sclerosis we used a novel phenotypic metabolic array. We profiled fibroblasts and induced neuronal progenitor-derived human induced astrocytes from C9orf72 amyotrophic lateral sclerosis patients compared to normal controls, measuring the rates of production of reduced nicotinamide adenine dinucleotides from 91 potential energy substrates. This approach shows for the first time that C9orf72 human induced astrocytes and fibroblasts have an adenosine to inosine deamination defect caused by reduction of adenosine deaminase, which is also observed in induced astrocytes from sporadic patients. Patient-derived induced astrocyte lines were more susceptible to adenosine-induced toxicity, which could be mimicked by inhibiting adenosine deaminase in control lines. Furthermore, adenosine deaminase inhibition in control induced astrocytes led to increased motor neuron toxicity in co-cultures, similar to the levels observed with patient derived induced astrocytes. Bypassing metabolically the adenosine deaminase defect by inosine supplementation was beneficial bioenergetically in vitro, increasing glycolytic energy output and leading to an increase in motor neuron survival in co-cultures with induced astrocytes. Inosine supplementation, in combination with modulation of the level of adenosine deaminase may represent a beneficial therapeutic approach to evaluate in patients with amyotrophic lateral sclerosis.
引用
收藏
页码:586 / 605
页数:20
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