Expression analysis of dopaminergic neurons in Parkinson's disease and aging links transcriptional dysregulation of energy metabolism to cell death

被引:118
作者
Elstner, Matthias [1 ,2 ]
Morris, Christopher M. [3 ,4 ]
Heim, Katharina [2 ]
Bender, Andreas [1 ]
Mehta, Divya [2 ]
Jaros, Evelyn [4 ]
Klopstock, Thomas [1 ]
Meitinger, Thomas [2 ,5 ]
Turnbull, Douglass M. [6 ]
Prokisch, Holger [2 ,5 ]
机构
[1] Univ Munich, Dept Neurol, Friedrich Baur Inst, Klinikum Grosshadern, D-81377 Munich, Germany
[2] German Res Ctr Environm Hlth, Helmholtz Zentrum Munchen, Inst Human Genet, D-85764 Neuherberg, Germany
[3] Newcastle Univ, Inst Neurosci, Med Toxicol Ctr, Wolfson Unit Clin Pharmacol, Newcastle Upon Tyne NE2 4AA, Tyne & Wear, England
[4] Newcastle Univ, Inst Ageing & Hlth, Newcastle Upon Tyne NE4 5PL, Tyne & Wear, England
[5] Tech Univ Munich, Inst Human Genet, D-81675 Munich, Germany
[6] Newcastle Univ, Mitochondrial Res Grp, Inst Ageing & Hlth, Newcastle Univ Ctr Brain Ageing & Vital, Newcastle Upon Tyne NE2 4HH, Tyne & Wear, England
基金
英国医学研究理事会;
关键词
Parkinson's disease; Aging; Dopaminergic neuron; Glia; Gene expression; Pathway analysis; Mitochondria; Energy metabolism; PI3K/Akt; mTOR; Hif-1; alpha; SUBSTANTIA-NIGRA; GENE-EXPRESSION; MITOCHONDRIAL BIOGENESIS; UBIQUITIN-PROTEASOME; AXON GUIDANCE; PATHWAY; SYSTEM; RAPAMYCIN; PROTECTS; NEURODEGENERATION;
D O I
10.1007/s00401-011-0828-9
中图分类号
R74 [神经病学与精神病学];
学科分类号
摘要
Dopaminergic (DA) neuron degeneration is a feature of brain aging but is markedly increased in patients with Parkinson's disease (PD). Recent data indicate elevated metabolic stress as a possible explanation for DA neuron vulnerability. Using laser capture microdissection, we isolated DA neurons from the substantia nigra pars compacta of PD patients, age-matched and young controls to determine transcriptional changes by expression profiling and pathway analysis. We verified our findings by comparison to a published dataset. Parallel processing of isolated neurons and bulk tissue allowed the discrimination of neuronal and glial transcription signals. Our data show that genes known to be involved in neural plasticity, axon and synaptic function, as well as cell fate are differentially regulated in aging DA neurons. The transcription patterns in aging suggest a largely maintained expression of genes in energy-related pathways in surviving neurons, possibly supported by the mediation of PPAR/RAR and CREB signaling. In contrast, a profound down-regulation of genes coding for mitochondrial and ubiquitin-proteasome system proteins was seen in PD when compared to the age-matched controls. This is in accordance with the established mitochondrial dysfunction in PD and provides evidence for mitochondrial impairment at the transcriptional level. In addition, the PD neurons had disrupted pathways that comprise a network involved in the control of energy metabolism and cell survival in response to growth factors, oxidative stress, and nutrient deprivation (PI3K/Akt, mTOR, eIF4/p70S6K and Hif-1 alpha). PI3K/Akt and mTOR signaling are central hubs of this network which is of relevance to longevity and-together with induction of mitochondrial biogenesis-may constitute potential targets for therapeutic intervention.
引用
收藏
页码:75 / 86
页数:12
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