首页> 外文期刊>Journal of Neurochemistry: Offical Journal of the International Society for Neurochemistry >Induction of galanin receptor-1 (GalR1) expression in external granule cell layer of post-natal mouse cerebellum.
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Induction of galanin receptor-1 (GalR1) expression in external granule cell layer of post-natal mouse cerebellum.

机译:出生后小鼠小脑外部颗粒细胞层中甘丙肽受体-1(GalR1)表达的诱导。

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摘要

Galanin is a modulator of fast transmission in adult brain and recent evidence suggests that it also acts as a trophic factor during neurogenesis and neural injury and repair. Previous studies in our laboratory have identified galanin mRNA in Purkinje cells of adult and developing rat (but not adult mouse) cerebellum; and galanin-binding sites in adult mouse (but not rat) cerebellum. The post-natal development of the cerebellum provides a unique and convenient model for the investigation of developmental processes and to learn more about putative cerebellar galanin systems, the current study examined the presence and distribution of galanin-like-immunoreactivity (- LI), [(125)I]-galanin binding sites and galanin receptor-1 (GalR1) mRNA in post-natal mouse cerebellum. Using autoradiography and in situ hybridization, [(125)I]-galanin binding sites and GalR1 mRNA were first detected on post-natal day 10 (P10) in the external germinal layer of all lobes and high levels were maintained until P14. Quantitative real-time PCR assays detected GalR1 mRNA in whole cerebellum across the post-natal period, with a strong induction and peak of expression at P10. Assessment of galanin levels in whole cerebellum by radioimmunoassay revealed relatively similar concentrations from P5 to P20 and in adult mice (80-170 pg/mg protein), with a significantly higher concentration (250 pg/mg, p < 0.01) detected at P3. These concentrations were some four- to six-fold lower than those in adult forebrain samples. Using immunohistochemistry, galanin-like-immuno-reactivity was observed in prominent fibrous elements within the white matter tracts of the cerebellum at P3-5 and in more punctate elements in the internal granule cell layer and associated with the Purkinje cell layer at P12 and P20. Increased levels of GalR1 mRNA and galanin binding (attributed to GalR1) in the external granule cell layer at P10-12/(14) coincide with granule cell migration from the external to the inner granule cell layer and together with demonstrated effects of other neuropeptide-receptor systems suggest a role for GalR1 signalling in regulating this or related developmental processes.
机译:甘丙肽是成人大脑中快速传播的调节剂,最近的证据表明,它在神经发生,神经损伤和修复过程中也起营养作用。我们实验室先前的研究已经鉴定了成年和发育中大鼠(但不是成年小鼠)小脑浦肯野细胞中的甘丙肽mRNA;和成年小鼠(而非大鼠)小脑的甘丙肽结合位点。小脑的产后发育为发育过程的研究提供了一个独特且方便的模型,并为了解假定的小脑甘丙肽系统提供了更多信息,本研究检查了甘丙肽样免疫反应性(-LI)的存在和分布,[出生后小鼠小脑中的(125)I]-甘丙肽结合位点和甘丙肽受体-1(GalR1)mRNA。使用放射自显影和原位杂交,首先在出生后第10天(P10)在所有肺叶的外生发层中检测到[(125)I]-甘丙肽结合位点和GalR1 mRNA,并维持高水平直至P14。实时定量PCR检测在整个出生后的整个小脑中检测到GalR1 mRNA,在P10处有很强的诱导力和表达高峰。通过放射免疫测定评估整个小脑中的甘丙肽水平,发现从P5到P20以及成年小鼠中的甘丙肽浓度相对相似(80-170 pg / mg蛋白),在P3处检测到的浓度明显更高(250 pg / mg,p <0.01)。这些浓度比成人前脑样品的浓度低四到六倍。使用免疫组织化学方法,在P3-5时小脑白质区的显着纤维成分中,以及在P12和P20时在内部颗粒细胞层中与Purkinje细胞层相关的更多点状成分中都观察到了甘丙肽样免疫反应。 。在P10-12 /(14)时,外部颗粒细胞层中GalR1 mRNA和甘丙肽结合的增加(归因于GalR1)与颗粒细胞从外部向内部颗粒细胞层的迁移以及其他神经肽-受体系统表明GalR1信号传导在调节这个或相关的发育过程中的作用。

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