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首页> 外文期刊>Cell and Tissue Research >Expression of ectonucleotidases in the prosencephalon of melatonin-proficient C3H and melatonin-deficient C57Bl mice: spatial distribution and time-dependent changes
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Expression of ectonucleotidases in the prosencephalon of melatonin-proficient C3H and melatonin-deficient C57Bl mice: spatial distribution and time-dependent changes

机译:褪黑素水平高的C3H和褪黑激素水平低的C57B1小鼠前脑中外切核苷酸酶的表达:空间分布和时间依赖性变化

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Extracellular purines (ATP, ADP, AMP and adenosine) are important signaling molecules in the CNS. Levels of extracellular purines are regulated by enzymes located at the cell surface referred to as ectonucleotidases. Time-dependent changes in their expression could profoundly influence the availability of extracellular purines and thereby purinergic signaling. Using radioactive in situ hybridization, we analyzed the mRNA distribution of the enzymes NTPDase1, -2 and -3 and ecto-5'-nucleotidase in the prosencephalon of two mouse strains: melatonin-proficient C3H and melatonin-deficient C57Bl. The mRNAs of these enzymes were localized to specific brain regions, such as hippocampus, striatum, medial habenula and ventromedial hypothalamus. NTPDase3 expression was more widely distributed than previously thought. All ectonucleotidases investigated revealed a prominent time-dependent expression pattern. In C3H, the mRNA expression of all four enzymes gradually increased during the day and peaked during the night. In contrast, in C57Bl, ecto-5'-nucleotidase expression peaked at the beginning of the day and gradually decreased to trough levels at night. Recording of locomotor activity revealed higher daytime activity of C57Bl than of C3H. Our results indicate that the expression of ectonucleotidases varies according to time and genotype and suggest that melatonin exerts modulatory effects associated with different regulations of purinergic signaling in the brain. These findings provide an important basis for further examination of the complexity of the purinergic system in the brain.
机译:细胞外嘌呤(ATP,ADP,AMP和腺苷)是中枢神经系统中重要的信号分子。细胞外嘌呤的水平由位于细胞表面的称为外切核苷酸酶的酶调节。其表达的时间依赖性变化可能会深刻影响细胞外嘌呤的可用性,从而影响嘌呤能信号传导。使用放射性原位杂交,我们分析了两种小鼠品系的褪黑素前体中的酶NTPDase1,-2和-3以及ecto-5'-核苷酸酶的mRNA分布:褪黑素水平高的C3H和褪黑激素水平低的C57B1。这些酶的mRNA定位于特定的大脑区域,例如海马,纹状体,ha内侧和下丘脑腹膜。 NTPDase3表达比以前认为的更为广泛。所有调查的外切核苷酸酶显示出突出的时间依赖性表达模式。在C3H中,所有四种酶的mRNA表达在白天逐渐增加,在夜间达到高峰。相反,在C57B1中,ecto-5'-核苷酸酶表达在一天开始时达到峰值,并在晚上逐渐降低至谷水平。运动活动的记录显示C57B1的白天活动高于C3H。我们的结果表明,胞外核苷酸酶的表达随时间和基因型的不同而变化,并表明褪黑激素发挥调节作用,与脑中嘌呤能信号传导的不同调节有关。这些发现为进一步检查脑中嘌呤能系统的复杂性提供了重要依据。

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