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NGL-3 in the regulation of brain development Akt/GSK3b signaling long-term depression and locomotive and cognitive behaviors

机译:NGL-3调节大脑发育Akt / GSK3b信号传导长期抑郁以及机车和认知行为

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摘要

Netrin-G ligand-3 (NGL-3) is a postsynaptic adhesion molecule known to directly interact with the excitatory postsynaptic scaffolding protein postsynaptic density-95 (PSD-95) and trans-synaptically with leukocyte common antigen-related (LAR) family receptor tyrosine phosphatases to regulate presynaptic differentiation. Although NGL-3 has been implicated in the regulation of excitatory synapse development by in vitro studies, whether it regulates synapse development or function, or any other features of brain development and function, is not known. Here, we report that mice lacking NGL-3 (Ngl3−/− mice) show markedly suppressed normal brain development and postnatal survival and growth. A change of the genetic background of mice from pure to hybrid minimized these developmental effects but modestly suppressed N-methyl-D-aspartate (NMDA) receptor (NMDAR)-mediated synaptic transmission in the hippocampus without affecting synapse development, α-amino-3-hydroxy-5-methyl-4-isoxazolepropionic acid (AMPA) receptor (AMPAR)-mediated basal transmission, and presynaptic release. Intriguingly, long-term depression (LTD) was near-completely abolished in Ngl3−/− mice, and the Akt/glycogen synthase kinase 3β (GSK3β) signaling pathway, known to suppress LTD, was abnormally enhanced. In addition, pharmacological inhibition of Akt, but not activation of NMDARs, normalized the suppressed LTD in Ngl3−/− mice, suggesting that Akt hyperactivity suppresses LTD. Ngl3−/− mice displayed several behavioral abnormalities, including hyperactivity, anxiolytic-like behavior, impaired spatial memory, and enhanced seizure susceptibility. Among them, the hyperactivity was rapidly improved by pharmacological NMDAR activation. These results suggest that NGL-3 regulates brain development, Akt/GSK3β signaling, LTD, and locomotive and cognitive behaviors.
机译:Netrin G配体3(NGL-3)是一种突触后黏附分子,已知可与兴奋性突触后支架蛋白突触后密度95(PSD-95)直接相互作用,并与白细胞共同抗原相关(LAR)家族受体反式突触酪氨酸磷酸酶调节突触前的分化。尽管NGL-3已通过体外研究参与了对兴奋性突触发展的调控,但尚不清楚它是否调控突触的发育或功能,或脑发育和功能的任何其他特征。在这里,我们报告缺少NGL-3的小鼠(Ngl3 -/-小鼠)显示出正常大脑发育以及出生后生存与生长的明显抑制。将小鼠的遗传背景从纯种转变为杂种,可最大程度地降低这些发育影响,但可适度抑制海马中N-甲基-D-天冬氨酸(NMDA)受体(NMDAR)介导的突触传递,而不会影响突触的发育,α-amino-3 -羟基-5-甲基-4-异恶唑丙酸(AMPA)受体(AMPAR)介导的基础传递和突触前释放。有趣的是,Ngl3 -/-小鼠中的长期抑郁症(LTD)几乎被完全消除,而已知抑制LTD的Akt /糖原合酶激酶3β(GSK3β)信号通路异常增强。 。此外,Akt的药理抑制作用而非NMDAR的激活作用并未使Ngl3 -/-小鼠中抑制的LTD正常化,这表明Akt过度活跃会抑制LTD。 Ngl3 -/-小鼠表现出多种行为异常,包括活动过度,抗焦虑行为,空间记忆受损和癫痫发作易感性增强。其中,通过药理NMDAR激活迅速改善了机能亢进。这些结果表明,NGL-3调节大脑发育,Akt /GSK3β信号传导,LTD以及机车和认知行为。

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