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携带神经发育疾病相关 GluN2B(L825V) 变异的小鼠的特征。

Characterization of Mice Carrying a Neurodevelopmental Disease-Associated GluN2B(L825V) Variant.

机构信息

Institute of Physiology of the Czech Academy of Sciences, Prague 14220, Czech Republic.

Faculty of Science, Charles University, Prague 12800, Czech Republic.

出版信息

J Neurosci. 2024 Jul 31;44(31):e2291232024. doi: 10.1523/JNEUROSCI.2291-23.2024.

Abstract

-Methyl-d-aspartate receptors (NMDARs), encoded by genes, are ionotropic glutamate receptors playing a critical role in synaptic transmission, plasticity, and synapse development. Genome sequence analyses have identified variants in genes in patients with neurodevelopmental disorders, but the underlying disease mechanisms are not well understood. Here, we have created and evaluated a transgenic mouse line carrying a missense variant , corresponding to a de novo variant encoding GluN2B(L825V) found in a patient with intellectual disability (ID) and autism spectrum disorder (ASD). We used HEK293T cells expressing recombinant receptors and primary hippocampal neurons prepared from heterozygous (L825V/+) and wild-type (WT) (+/+) male and female mice to assess the functional impact of the variant. Whole-cell NMDAR currents were reduced in neurons from L825V/+ compared with +/+ mice. The peak amplitude of NMDAR-mediated evoked excitatory postsynaptic currents (NMDAR-eEPSCs) was unchanged, but NMDAR-eEPSCs in L825V/+ neurons had faster deactivation compared with +/+ neurons and were less sensitive to a GluN2B-selective antagonist ifenprodil. Together, these results suggest a decreased functional contribution of GluN2B subunits to synaptic NMDAR currents in hippocampal neurons from L825V/+ mice. The analysis of the GluN2B(L825V) subunit surface expression and synaptic localization revealed no differences compared with WT GluN2B. Behavioral testing of mice of both sexes demonstrated hypoactivity, anxiety, and impaired sensorimotor gating in the L825V/+ strain, particularly affecting males, as well as cognitive symptoms. The heterozygous L825V/+ mouse offers a clinically relevant model of -related ID/ASD, and our results suggest synaptic-level functional changes that may contribute to neurodevelopmental pathology.

摘要
  • 谷氨酸 N-甲基-D-天冬氨酸受体(NMDARs)由 基因编码,是离子型谷氨酸受体,在突触传递、可塑性和突触发育中发挥关键作用。基因组序列分析已经在神经发育障碍患者中鉴定出 基因的变异,但潜在的疾病机制尚不清楚。在这里,我们创建并评估了一个携带错义变异的转基因小鼠品系,该变异对应于在一名智力障碍(ID)和自闭症谱系障碍(ASD)患者中发现的从头变异,编码 GluN2B(L825V)。我们使用表达重组受体的 HEK293T 细胞和从杂合子(L825V/+)和野生型(WT)(+/+)雄性和雌性小鼠制备的原代海马神经元来评估该变异的功能影响。与 +/+ 小鼠相比,L825V/+ 神经元中的全细胞 NMDAR 电流减少。NMDAR 介导的诱发兴奋性突触后电流(NMDAR-eEPSC)的峰值幅度没有改变,但 L825V/+ 神经元中的 NMDAR-eEPSC 去激活更快,并且对 GluN2B 选择性拮抗剂ifenprodil 的敏感性降低。这些结果表明,L825V/+ 小鼠海马神经元中 GluN2B 亚基对突触 NMDAR 电流的功能贡献降低。对 GluN2B(L825V)亚基表面表达和突触定位的分析表明,与 WT GluN2B 相比没有差异。对两种性别的小鼠进行行为测试表明,L825V/+ 品系表现出活动减少、焦虑和感觉运动门控受损,特别是对雄性小鼠,以及认知症状。杂合子 L825V/+ 小鼠提供了一种与 ID/ASD 相关的临床相关模型,我们的结果表明突触水平的功能变化可能导致神经发育病理学。

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