首页> 外文期刊>Biochimica et Biophysica Acta. Gene Regulatory Mechanisms >The role of reelin in adult synaptic function and the genetic and epigenetic regulation of the reelin gene
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The role of reelin in adult synaptic function and the genetic and epigenetic regulation of the reelin gene

机译:reelin在成人突触功能中的作用以及reelin基因的遗传和表观遗传调控

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摘要

An emerging theme in the field of neuroscience is that processes critical for neurodevelopment have been co-opted by the adult nervous system to subserve synaptic plasticity and cognition. In this review, we highlight a surprising intersection of two developmental processes that together play a critical role in synaptic plasticity, memory formation and cognition. Reelin, a large glycoprotein associated with the extracellular matrix, is crucial for cortical and cerebellar development. Recent data from several groups indicate that reelin plays a unique modulatory role in the induction of synaptic plasticity in the hippocampus, and that normal levels of reelin in the adult brain are essential for successful formation of certain forms of long-term memory. Given that both increases and decreases in reelin expression have significant effects on plasticity and memory, regulation of reelin expression is predicted to have significant effects on neural function. Epigenetic regulation of transcription is critical for differentiation of cellular phenotype in metazoans. Dozens of reports in the last few years have demonstrated that epigenetics is involved in modulating gene expression in the adult nervous system and subserves plasticity and memory formation. We review a series of studies that demonstrate that the reelin promoter is subject to differential DNA methylation in the adult nervous system, and that perturbations in reelin promoter methylation correlate with alterations in memory formation and cognition. Thus, two distinct developmental processes, reelin-mediated signaling and epigenetic-based transcriptional regulation, appear to have synergized in the adult nervous system to create a sensitive and robust system for modulation of synaptic plasticity, and ultimately provide a powerful set of tools to probe the molecular basis of cognition.
机译:神经科学领域的一个新兴主题是,对神经发育至关重要的过程已被成人神经系统所采用,以维持突触可塑性和认知能力。在这篇综述中,我们重点介绍了两个发育过程的惊人交汇,它们在突触可塑性,记忆形成和认知中共同发挥关键作用。 Reelin是一种与细胞外基质相关的大糖蛋白,对皮层和小脑发育至关重要。来自几个小组的最新数据表明,reelin在海马突触可塑性的诱导中起独特的调节作用,而成人大脑中reelin的正常水平对于成功形成某些形式的长期记忆至关重要。鉴于reelin表达的增加和减少均对可塑性和记忆力有显着影响,因此预测reelin表达的调节对神经功能有显着影响。转录的表观遗传调控对于后生动物细胞表型的分化至关重要。最近几年的许多报告表明,表观遗传学参与调节成年神经系统中的基因表达,并保留可塑性和记忆形成。我们审查了一系列的研究,证明reelin启动子在成人神经系统中受到差异DNA甲基化的影响,并且reelin启动子甲基化的扰动与记忆形成和认知的改变有关。因此,reelin介导的信号传导和基于表观遗传学的转录调控这两个不同的发育过程似乎已在成人神经系统中协同作用,以创建一个敏感而健壮的系统来调节突触可塑性,并最终提供了一套功能强大的工具来探测认知的分子基础。

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