首页> 外文期刊>Journal of Neurochemistry: Offical Journal of the International Society for Neurochemistry >L-DOPA activates ERK signaling and phosphorylates histone H3 in the striatonigral medium spiny neurons of hemiparkinsonian mice.
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L-DOPA activates ERK signaling and phosphorylates histone H3 in the striatonigral medium spiny neurons of hemiparkinsonian mice.

机译:L-DOPA激活半帕金森氏症小鼠的纹状体中突棘神经元中的ERK信号并使磷酸化组蛋白H3。

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摘要

In the dopamine-depleted striatum, extracellular signal-regulated kinase (ERK) signaling is implicated in the development of L-DOPA-induced dyskinesia. To gain insights on its role in this disorder, we examined the effects of L-DOPA on the state of phosphorylation of ERK and downstream target proteins in striatopallidal and striatonigral medium spiny neurons (MSNs). For this purpose, we employed mice expressing enhanced green fluorescent protein (EGFP) under the control of the promoters for the dopamine D(2) receptor (Drd2-EGFP mice) or the dopamine D(1) receptor (Drd1a-EGFP mice), which are expressed in striatopallidal and striatonigral MSNs, respectively. In 6-hydroxydopamine-lesioned Drd2-EGFP mice, L-DOPA increased the phosphorylation of ERK, mitogen- and stress-activated kinase 1 and histone H3, selectively in EGFP-negative MSNs. Conversely, a complete co-localization between EGFP and these phosphoproteins was observed in Drd1a-EGFP mice. The effect of L-DOPA was prevented by blockade of dopamine D(1) receptors. The same pattern of activation of ERK signaling was observed in dyskinetic mice, after repeated administration of L-DOPA. Our results demonstrate that in the dopamine-depleted striatum, L-DOPA activates ERK signaling specifically in striatonigral MSNs. This regulation may result in ERK-dependent changes in striatal plasticity leading to dyskinesia.
机译:在多巴胺耗尽的纹状体中,细胞外信号调节激酶(ERK)信号传导与L-DOPA诱导的运动障碍的发展有关。为了深入了解其在这种疾病中的作用,我们研究了L-DOPA对纹状体顶神经和纹状体中枢神经元(MSNs)中ERK和下游靶蛋白磷酸化状态的影响。为此,我们采用了在多巴胺D(2)受体(Drd2-EGFP小鼠)或多巴胺D(1)受体(Drd1a-EGFP小鼠)的启动子控制下表达增强的绿色荧光蛋白(EGFP)的小鼠,它们分别在纹状体顶体和纹状体MSN中表达。在6-羟基多巴胺损伤的Drd2-EGFP小鼠中,L-DOPA在EGFP阴性的MSNs中选择性地增加了ERK,有丝分裂原和应激激活的激酶1和组蛋白H3的磷酸化。相反,在Drd1a-EGFP小鼠中观察到EGFP与这些磷蛋白之间的完全共定位。 L-DOPA的作用可通过阻止多巴胺D(1)受体来阻止。反复服用L-DOPA后,在运动障碍小鼠中观察到了相同的ERK信号激活模式。我们的研究结果表明,在多巴胺缺失的纹状体中,L-DOPA激活ERG信号,特别是在纹状体MSN中。该调节可能导致纹状体可塑性的ERK依赖性改变,导致运动障碍。

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