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Copper-mediated DNA damage by the neurotransmitter dopamine and L-DOPA: A pro-oxidant mechanism

机译:铜介导的神经递质多巴胺和L-DOPA的DNA损伤:一种促氧化剂机制

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摘要

Oxidative DNA damage has been implicated in the pathogenesis of neurological disorders, cancer and ageing. Owing to the established link between labile copper concentrations and neurological diseases, it is critical to explore the interactions of neurotransmitters and drug supplements with copper. Herein, we investigate the pro-oxidant DNA damage induced by the interaction of L-DOPA and dopamine (DA) with copper. The DNA binding affinity order of the compounds has been determined by in silico molecular docking. Agarose gel electrophoresis reveals that L-DOPA and DA are able to induce strand scission in plasmid pcDNA3.1 (+/−) in a copper dependent reaction. These metabolites also cause cellular DNA breakage in human lymphocytes by mobilizing endogenous copper, as assessed by comet assay. Further, L-DOPA and DA-mediated DNA breaks were detected by the appearance of post-DNA damage sensitive marker γH2AX in cancer cell lines accumulating high copper. Immunofluorescence demonstrated the co-localization of downstream repair factor 53BP1 at the damaged induced γH2AX foci in cancer cells. The present study corroborates and provides a mechanism to the hypothesis that suggests metal-mediated oxidation of catecholamines contributes to the pathogenesis of neurodegenerative diseases.
机译:氧化性DNA损伤与神经系统疾病,癌症和衰老的发病机理有关。由于不稳定的铜浓度与神经系统疾病之间已建立联系,因此探索神经递质和药物补充剂与铜之间的相互作用至关重要。在本文中,我们研究了由L-DOPA和多巴胺(DA)与铜的相互作用引起的促氧化剂DNA损伤。通过计算机分子对接确定了化合物的DNA结合亲和力顺序。琼脂糖凝胶电泳显示,L-DOPA和DA能够在铜依赖性反应中诱导质粒pcDNA3.1(+/-)中的分裂。这些代谢物还通过动员内源铜而导致人类淋巴细胞中的细胞DNA断裂,如彗星试验所评估的。此外,L-DOPA和DA介导的DNA断裂是通过在积累高铜的癌细胞系中出现DNA损伤后敏感标记γH2AX来检测的。免疫荧光显示下游修复因子53BP1在癌细胞中受损的诱导γH2AX灶处共定位。本研究证实并提出了一种机制的假说,该假说表明金属介导的儿茶酚胺氧化有助于神经退行性疾病的发病。

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