Alpha-synuclein oligomerization and aggregation are considered to have a role in the pathogenesis of neurodegenerative diseases. However, despite numerous in vitro studies, the impact of aggregates in the intact brain is unclear. In vitro, oxidative/nitrative stress and acidity induce α-synuclein oligomerization. These conditions favoring α-synuclein fibrillization are present in the ischemic brain, which may serve as an in vivo model to study α-synuclein aggregation. In this study, we show that 30-minute proximal middle cerebral artery (MCA) occlusion and 72âhours reperfusion induce oligomerization of wild-type α-synuclein in the ischemic mouse brain. The nonamyloidogenic isoform β-synuclein did not form oligomers. Alpha-synuclein aggregates were confined to neurons and colocalized with ubiquitin immunoreactivity. We also found that 30âminutes proximal MCA occlusion and 24âhours reperfusion induced larger infarcts in C57BL/6(Thy1)-h[A30P]alphaSYN transgenic mice, which have an increased tendency to form synuclein fibrils. Trangenics also developed more selective neuronal necrosis when subjected to 20âminutes distal MCA occlusion and 72âhours reperfusion. Enhanced 3-nitrotyrosine immunoreactivity in transgenic mice suggests that oxidative/nitrative stress may be one of the mechanisms mediating aggregate toxicity. Thus, the increased vulnerability of transgenic mice to ischemia suggests that α-synuclein aggregates not only form during ischemia but also negatively impact neuronal survival, supporting the idea that α-synuclein misfolding may be neurotoxic.
Alpha-synuclein aggregation induced by brief ischemia negatively impacts neuronal survival in vivo: a study in [A30P]alpha-synuclein transgenic mouse.
短暂缺血诱导的α-突触核蛋白聚集对体内神经元存活产生负面影响:[A30P]α-突触核蛋白转基因小鼠的研究
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作者:Unal-Cevik Isin, Gursoy-Ozdemir Yasemin, Yemisci Muge, Lule Sevda, Gurer Gunfer, Can Alp, Müller Veronica, Kahle Philip J, Dalkara Turgay
| 期刊: | Journal of Cerebral Blood Flow and Metabolism | 影响因子: | 4.500 |
| 时间: | 2011 | 起止号: | 2011 Mar;31(3):913-23 |
| doi: | 10.1038/jcbfm.2010.170 | 研究方向: | 神经科学 |
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