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Mechanisms and Consequences of Dopamine Depletion-Induced Attenuation of the Spinophilin/Neurofilament Medium Interaction

机译:多巴胺耗竭引起的亲脂蛋白/神经丝介质相互作用的减弱的机制和结果

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摘要

Signaling changes that occur in the striatum following the loss of dopamine neurons in the Parkinson disease (PD) are poorly understood. While increases in the activity of kinases and decreases in the activity of phosphatases have been observed, the specific consequences of these changes are less well understood. Phosphatases, such as protein phosphatase 1 (PP1), are highly promiscuous and obtain substrate selectivity via targeting proteins. Spinophilin is the major PP1-targeting protein enriched in the postsynaptic density of striatal dendritic spines. Spinophilin association with PP1 is increased concurrent with decreases in PP1 activity in an animal model of PD. Using proteomic-based approaches, we observed dopamine depletion-induced decreases in spinophilin binding to multiple protein classes in the striatum. Specifically, there was a decrease in the association of spinophilin with neurofilament medium (NF-M) in dopamine-depleted striatum. Using a heterologous cell line, we determined that spinophilin binding to NF-M required overexpression of the catalytic subunit of protein kinase A and was decreased by cyclin-dependent protein kinase 5. Functionally, we demonstrate that spinophilin can decrease NF-M phosphorylation. Our data determine mechanisms that regulate, and putative consequences of, pathological changes in the association of spinophilin with NF-M that are observed in animal models of PD.
机译:人们对帕金森病(PD)中多巴胺神经元丧失后纹状体中发生的信号变化知之甚少。虽然已经观察到激酶活性的增加和磷酸酶活性的减少,但是人们对这些变化的具体后果知之甚少。磷酸酶(例如蛋白质磷酸酶1(PP1))高度混杂,并通过靶向蛋白质获得底物选择性。 Spinophilin是富集纹状体树突棘突触后密度的主要PP1靶向蛋白。在PD动物模型中,与PP1的Spinophilin结合增加,而PP1活性降低。使用基于蛋白质组学的方法,我们观察到多巴胺耗竭引起的亲脂蛋白与纹状体中多种蛋白质结合的减少。具体而言,在多巴胺缺失的纹状体中,亲脂蛋白与神经丝介质(NF-M)的缔合减少。使用异源细胞系,我们确定Spinophilin与NF-M的结合需要蛋白激酶A催化亚基的过表达,并被细胞周期蛋白依赖性蛋白激酶5降低。在功能上,我们证明Spinophilin可以减少NF-M磷酸化。我们的数据确定了在PD动物模型中观察到的调节亲脂蛋白与NF-M关联的病理变化的机制以及可能的后果。

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