Copper Dependent Modulation Of Alpha-Synuclein Phosphorylation In Differentiated Shsy5y Neuroblastoma Cells

INTERNATIONAL JOURNAL OF MOLECULAR SCIENCES(2021)

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摘要
Copper (Cu) dyshomeostasis plays a pivotal role in several neuropathologies, such as Parkinson's disease (PD). Metal accumulation in the central nervous system (CNS) could result in loss-of-function of proteins involved in Cu metabolism and redox cycling, generating reactive oxygen species (ROS). Moreover, neurodegenerative disorders imply the presence of an excess of misfolded proteins known to lead to neuronal damage. In PD, Cu accumulates in the brain, binds alpha-synuclein, and initiates its aggregation. We assessed the correlation between neuronal differentiation, Cu homeostasis regulation, and alpha-synuclein phosphorylation. At this purpose, we used differentiated SHSY5Y neuroblastoma cells to reproduce some of the characteristics of the dopaminergic neurons. Here, we reported that differentiated cells expressed a significantly higher amount of a copper transporter protein 1 (CTR1), increasing the copper uptake. Cells also showed a significantly more phosphorylated form of alpha-synuclein, further increased by copper treatment, without modifications in alpha-synuclein levels. This effect depended on the upregulation of the polo-like kinase 2 (PLK2), whereas the levels of the relative protein phosphatase 2A (PP2A) remained unvaried. No changes in the oxidative state of the cells were identified. The Cu dependent alteration of alpha-synuclein phosphorylation pattern might potentially offer new opportunities for clinical intervention.
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关键词
copper, &#945, -synuclein, Parkinson&#8217, s disease (PD), oxidative stress, ROS
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