首页> 美国卫生研究院文献>International Journal of Molecular Sciences >Alteration of the Dopamine Receptors’ Expression in the Cerebellum of the Lysosomal Acid Phosphatase 2 Mutant (Naked–Ataxia (NAX)) Mouse
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Alteration of the Dopamine Receptors’ Expression in the Cerebellum of the Lysosomal Acid Phosphatase 2 Mutant (Naked–Ataxia (NAX)) Mouse

机译:多巴胺受体在溶酶体酸性磷酸酶2突变体(裸性共济失调(NAX))小脑中的表达变化

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摘要

A spontaneous mutation in the lysosomal acid phosphatase ( ) enzyme ( : naked–ataxia) in experimental mice results in delayed hair appearance and severe cytoarchitectural impairments of the cerebellum, such as a Purkinje cell (PC) migration defect. In our previous investigation, our team showed that Acp2 expression plans a significant role in cerebellar development. On the other hand, the dopaminergic system is also a player in central nervous system (CNS) development, including cerebellar structure and function. In the current investigation, we have explored how can be involved in the regulation of the dopaminergic pathway in the cerebellum via the regulation of dopamine receptor expression and patterning. We provided evidence about the distribution of different dopamine receptors in the developing cerebellum by comparing the expression of dopamine receptors on postnatal days (P) 5 and 17 between mice and wild–type (wt) littermates. To this aim, immunohistochemistry and Western blot analysis were conducted using five antibodies against dopamine receptors (DRD1, –2, –3, –4, and –5) accompanied by RNAseq data. Our results revealed that DRD1, –3, and –4 gene expressions significantly increased in cerebella but not in wt, while gene expressions of all 5 receptors were evident in PCs of both wt and cerebella. DRD3 was strongly expressed in the PCs’ somata and cerebellar nuclei neurons at P17 in mice, which was comparable to the expression levels in the cerebella of wt littermates. In addition, DRD3 was expressed in scattered cells in a granular layer reminiscent of Golgi cells and was observed in the wt cerebella but not in mice. DRD4 was expressed in a subset of PCs and appeared to align with the unique parasagittal stripes pattern. This study contributes to our understanding of alterations in the expression pattern of DRDs in the cerebellum of mice in comparison to their wt littermates, and it highlights the role of in regulating the dopaminergic system.
机译:实验小鼠中的溶酶体酸性磷酸酶()酶(:裸子共济失调)自发突变会导致毛发出现延迟和小脑严重的细胞结构损伤,例如浦肯野细胞(PC)迁移缺陷。在我们之前的研究中,我们的团队表明Acp2表达计划在小脑发育中发挥重要作用。另一方面,多巴胺能系统也是中枢神经系统(CNS)发育的参与者,包括小脑结构和功能。在当前的研究中,我们已经探索了如何通过调节多巴胺受体的表达和模式来参与小脑中多巴胺能途径的调节。通过比较小鼠和野生型(wt)同窝仔在出生后第5天和第17天的多巴胺受体的表达,我们为发育中的小脑中不同的多巴胺受体的分布提供了证据。为此,使用了五种针对多巴胺受体(DRD1,–2,–3,–4和–5)的多巴胺受体抗体,并结合了RNAseq数据进行了免疫组织化学和蛋白质印迹分析。我们的结果表明,DRD1,–3和–4基因表达在小脑中显着增加,但在wt中没有增加,而所有5种受体的基因表达在wt和小脑的PC中均很明显。 DRD3在小鼠P17的PC的躯体和小脑核神经元中强烈表达,这与野生型小白蚁在小脑中的表达水平相当。另外,DRD3在使细胞回想起高尔基细胞的颗粒层中的分散细胞中表达,并且在野生型小脑中观察到,但在小鼠中未观察到。 DRD4在PC的子集中表达,并且似乎与独特的矢状旁条纹图案对齐。这项研究有助于我们了解小鼠小脑中DRDs的表达模式与其wt同窝仔相比的变化,并强调了其在调节多巴胺能系统中的作用。

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