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首页> 外文期刊>Amino acids >Prenatal expression of d-aspartate oxidase causes early cerebral d-aspartate depletion and influences brain morphology and cognitive functions at adulthood
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Prenatal expression of d-aspartate oxidase causes early cerebral d-aspartate depletion and influences brain morphology and cognitive functions at adulthood

机译:D-天冬氨酸氧化酶的产前表达导致早期脑D-天冬氨酸耗竭,影响成年期的脑形态和认知功能

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摘要

The free d-amino acid, d-aspartate, is abundant in the embryonic brain but significantly decreases after birth. Besides its intracellular occurrence, d-aspartate is also present at extracellular level and acts as an endogenous agonist for NMDA and mGlu5 receptors. These findings suggest that d-aspartate is a candidate signaling molecule involved in neural development, influencing brain morphology and behaviors at adulthood. To address this issue, we generated a knockin mouse model in which the enzyme regulating d-aspartate catabolism, d-aspartate oxidase (DDO), is expressed starting from the zygotic stage, to enable the removal of d-aspartate in prenatal and postnatal life. In line with our strategy, we found a severe depletion of cerebral d-aspartate levels (up to 95%), since the early stages of mouse prenatal life. Despite the loss of d-aspartate content, Ddo knockin mice are viable, fertile, and show normal gross brain morphology at adulthood. Interestingly, early d-aspartate depletion is associated with a selective increase in the number of parvalbumin-positive interneurons in the prefrontal cortex and also with improved memory performance in Ddo knockin mice. In conclusion, the present data indicate for the first time a biological significance of precocious d-aspartate in regulating mouse brain formation and function at adulthood.
机译:游离D-氨基酸,D-天冬氨酸在胚胎大脑中丰富,但出生后显着降低。除了其细胞内发生之外,D-天冬氨酸还存在细胞外水平,并作为NMDA和MGLU5受体的内源激动剂。这些发现表明,D-天冬氨酸是涉及神经发育的候选信号分子,影响成年期的脑形态和行为。为了解决这个问题,我们生成了一种基本鼠标模型,其中调节D-天冬氨酸分解代谢D-天冬氨酸氧化酶(DDO)的酶从Zygotic阶段开始表达,以使得在产前和产前生命中去除D-天冬氨酸。根据我们的策略,我们发现严重耗尽脑D-天冬氨酸水平(高达95%),因为小鼠产前生命的早期阶段。尽管D-天冬氨酸含量丧失,DDO Knockin小鼠是可行的,肥沃的,并且在成年期显示正常的脑脑形态。有趣的是,早期的D-天冬氨酸耗竭与前额叶皮质中的帕瓦耳蛋白阳性阳性间核数的选择性增加相关,并且在DDO基本小鼠中具有改善的记忆性能。总之,目前的数据表明,首次首次在成年期调节小鼠脑形成和功能方面的预授予D-天冬氨酸的生物学意义。

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