首页> 外文期刊>Journal of Neurochemistry: Offical Journal of the International Society for Neurochemistry >JNK2 and JNK3 combined are essential for apoptosis in dopamine neurons of the substantia nigra, but are not required for axon degeneration.
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JNK2 and JNK3 combined are essential for apoptosis in dopamine neurons of the substantia nigra, but are not required for axon degeneration.

机译:JNK2和JNK3组合对于黑质多巴胺神经元的凋亡至关重要,但对于轴突变性则不是必需的。

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摘要

Activation of c-jun N-terminal kinase (JNK) by the mitogen-activated protein kinase cascade has been shown to play an important role in the death of dopamine neurons of the substantia nigra, one of the principal neuronal populations affected in Parkinson's disease. However, it has remained unknown whether the JNK2 and JNK3 isoforms, either singly or in combination, are essential for apoptotic death, and, if so, the mechanisms involved. In addition, it has been unclear whether they play a role in axonal degeneration of these neurons in disease models. To address these issues we have examined the effect of single and double jnk2 and jnk3 null mutations on apoptosis in a highly destructive neurotoxin model, that induced by intrastriatal 6-hydroxydopamine. We find that homozygous jnk2/3 double null mutations result in a complete abrogation of apoptosis and a prolonged survival of the entire population of dopamine neurons. In spite of this complete protection at the cell soma level, there was no protection of axons. These studies provide a striking demonstration of the distinctiveness of the mechanisms that mediate cell soma and axon degeneration, and they illustrate the need to identify and target pathways of axon degeneration in the development of neuroprotective therapeutics.
机译:已证明有丝分裂原活化的蛋白激酶级联反应激活c-jun N末端激酶(JNK)在黑质的多巴胺神经元的死亡中起重要作用,黑质是受帕金森氏病影响的主要神经元之一。但是,尚不清楚JNK2和JNK3同工型(单独还是组合)是否对凋亡性死亡至关重要,如果涉及,则涉及的机制也是如此。此外,尚不清楚它们是否在疾病模型中这些神经元的轴突变性中起作用。为了解决这些问题,我们研究了在具有高度破坏性的神经毒素模型中单次和两次jnk2和jnk3无效突变对细胞凋亡的影响,该模型由纹状体内6-羟基多巴胺诱导。我们发现纯合的jnk2 / 3双无效突变导致细胞凋亡的完全废除和整个多巴胺神经元群体的延长生存期。尽管在细胞体水平上有这种完全的保护,但是没有轴突的保护。这些研究为介导细胞体和轴突变性的机制的独特性提供了惊人的证明,并且它们说明了在神经保护性疗法的发展中需要确定和靶向轴突变性的途径。

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