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首页> 外文期刊>Scientific reports. >Differential protein expression of DARPP-32 versus Calcineurin in the prefrontal cortex and nucleus accumbens in schizophrenia and bipolar disorder
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Differential protein expression of DARPP-32 versus Calcineurin in the prefrontal cortex and nucleus accumbens in schizophrenia and bipolar disorder

机译:在精神分裂症和双相障碍中,DARPP-32对钙肌蛋白的差异蛋白表达和煅烧菌素中的核心障碍和双相障碍

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摘要

Dopamine- and cAMP-regulated phosphoprotein of molecular weight 32?kDa (DARPP-32) integrates dopaminergic signaling into that of several other neurotransmitters. Calcineurin (CaN), located downstream of dopaminergic pathways, inactivates DARPP-32 by dephosphorylation. Despite several studies have examined their expression levels of gene and protein in postmortem patients' brains, they rendered inconsistent results. In this study, protein expression levels of DARPP-32 and CaN were measured by enzyme-linked immunosorbent assay (ELISA) in the prefrontal cortex (PFC), and nucleus accumbens (NAc) of 49 postmortem samples from subjects with schizophrenia, bipolar disorder, and normal controls. We also examined the association between this expression and genetic variants of 8 dopaminergic system-associated molecules for 55 SNPs in the same postmortem samples. In the PFC of patients with schizophrenia, levels of DARPP-32 were significantly decreased, while those of CaN tended to increase. In the NAc, both of DARPP-32 and CaN showed no significant alternations in patients with schizophrenia or bipolar disorder. Further analysis of the correlation of DARPP-32 and CaN expressions, we found that positive correlations in controls and schizophrenia in PFC, and schizophrenia in NAc. In PFC, the expression ratio of DARPP-32/CaN were significantly lower in schizophrenia than controls. We also found that several of the aforementioned SNPs may predict protein expression, one of which was confirmed in a second independent sample set. This differential expression of DARPP-32 and CaN may reflect potential molecular mechanisms underlying the pathogenesis of schizophrenia and bipolar disorder, or differences between these two major psychiatric diseases.
机译:分子量的多巴胺和Camp调节磷蛋白32?KDA(DARPP-32)将多巴胺能信号传导与其他几种神经递质的聚合物集成在一起。位于多巴胺能途径下游的钙素素(CAN),通过去磷酸化灭活DARPP-32。尽管有几项研究已经检测到后期患者的大脑中基因和蛋白质的表达水平,但结果不一致。在该研究中,DARPP-32的蛋白表达水平,可以通过酶联免疫吸附试验(ELISA)在预甲状腺皮质(PFC)中测量49个蛋白质中的49个蛋白质中的核常规(NAC)测量,来自受试者,双相障碍,和正常的控制。我们还在同一后后蛋白样品中检查了8个多巴胺能系统相关分子的这种表达和遗传变异之间的关联。在精神分裂症患者的PFC中,DARPP-32的水平显着降低,而那些可以倾向于增加。在NAC中,DARPP-32都可以患有精神分裂症或双相障碍的患者没有显示出明显的选择。进一步分析DARPP-32和CAN表达的相关性,我们发现PFC中对照和精神分裂症中的阳性相关性,以及NAC的精神分裂症。在PFC中,精神分裂症的DARPP-32 /罐的表达比显着低于对照。我们还发现,上述几种上述SNP可以预测蛋白质表达,其中一个在第二个独立样品组中证实。这种DARPP-32的差异表达,可以反映精神分裂症和双相障碍发病机制的潜在分子机制,或这两个主要精神疾病之间的差异。

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