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The Rise and Fall of the D-Serine-Mediated Gliotransmission Hypothesis

机译:D丝氨酸介导的神经胶质传输假说的兴衰

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摘要

D-Serine modulates N-methyl D-aspartate receptors (NMDARs) and regulates synaptic plasticity, neurodevelopment, and learning and memory. However, the primary site of D-serine synthesis and release remains controversial, with some arguing that it is a gliotransmitter and others defining it as a neuronal cotransmitten Results from several laboratories using different strategies now show that the biosynthetic enzyme of D-serine, serine racemase (SR), is expressed almost entirely by neurons, with few astrocytes appearing to contain D-serine. Cell selective suppression of SR expression demonstrates that neuronal, rather than astrocytic D-serine, modulates synaptic plasticity. Here, we propose an alternative conceptualization whereby astrocytes affect D-serine levels by synthesizing L-serine that shuttles to neurons to fuel the neuronal synthesis of D-serine.
机译:D-丝氨酸调节N-甲基D-天冬氨酸受体(NMDARs)并调节突触可塑性,神经发育以及学习和记忆。然而,D-丝氨酸合成和释放的主要位点仍存在争议,有人争论说它是神经胶质递质,另一些人将其定义为神经元共递质。一些实验室采用不同策略得出的结果现在表明,D-丝氨酸的生物合成酶是丝氨酸。总的来说,消旋酶(SR)几乎全部由神经元表达,几乎没有星形胶质细胞含有D-丝氨酸。 SR表达的细胞选择性抑制表明,神经元而非星形胶质D-丝氨酸可调节突触可塑性。在这里,我们提出了另一种概念化方法,即星形胶质细胞通过合成穿梭到神经元以促进D-丝氨酸神经元合成的L-丝氨酸来影响D-丝氨酸水平。

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