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小鼠:一种与[疾病名称]相关的神经发育障碍的临床前模型。 (注:原文中“-Related Neurodevelopmental Disorder”部分缺失具体疾病信息,翻译时保留原样)

Mice: A Preclinical Model of -Related Neurodevelopmental Disorder.

作者信息

Sullivan Megan T, Tidball Patrick, Yan Yuanye, Intson Katheron, Chen Wenjuan, Xu Yuchen, Venkatesan Sridevi, Horsfall Wendy, Georgiou John, Finnie Peter S B, Lambe Evelyn K, Traynelis Stephen F, Salahpour Ali, Yuan Hongjie, Collingridge Graham L, Ramsey Amy J

出版信息

bioRxiv. 2024 Aug 21:2024.08.21.608984. doi: 10.1101/2024.08.21.608984.

Abstract

OBJECTIVE

-related neurodevelopmental disorder ( -NDD) is characterized by clinically significant variation in the gene, which encodes the obligatory GluN1 subunit of N-methyl-D-aspartate receptors (NMDARs). The identified p.Tyr647Ser (Y647S) variant - carried by a 33-year-old female with seizures and intellectual disability - is located in the M3 helix in the GluN1 transmembrane domain. This study builds upon initial investigations of the functional impacts of the Y647S variant and examines its consequences in a mouse model.

METHODS

To investigate functional impacts of NMDARs containing GluN1-Y647S variant subunits, GluN1-Y647S was co-expressed with wildtype GluN2A or GluN2B subunits in oocytes and HEK cells. mice were created by CRISPR-Cas9 endonuclease-mediated transgenesis and the molecular, electrophysiological, and behavioural consequences of the variant were examined.

RESULTS

, NMDARs containing GluN1-Y647S show altered sensitivity to endogenous agonists and negative allosteric modulators, and reduced cell surface trafficking. mice displayed a reduction in whole brain GluN1 levels and deficiency in NMDAR-mediated synaptic transmission in the hippocampus. Behaviourally, mice exhibited spontaneous seizures, altered vocalizations, muscle strength, sociability, and problem-solving.

INTERPRETATION

The Y647S variant confers a complex phenotype, which reflects largely diminished properties of NMDAR function. As a result, mice display atypical behaviour in domains relevant to the clinical characteristics of -NDD and the individual carrying the variant. Ultimately, the characterization of mice accomplished in the present work expands our understanding of the mechanisms underlying -NDD and provides a foundation for the development of novel therapeutics.

摘要

目的

与 相关的神经发育障碍( -NDD)的特征是编码 N-甲基-D-天冬氨酸受体(NMDARs)必需的 GluN1 亚基的 基因存在具有临床意义的变异。一名患有癫痫和智力残疾的 33 岁女性携带的已鉴定的 p.Tyr647Ser(Y647S)变体位于 GluN1 跨膜结构域的 M3 螺旋中。本研究基于对 Y647S 变体功能影响的初步研究,并在小鼠模型中研究其后果。

方法

为了研究含有 GluN1-Y647S 变体亚基的 NMDARs 的功能影响,将 GluN1-Y647S 与野生型 GluN2A 或 GluN2B 亚基在卵母细胞和 HEK 细胞中共表达。通过 CRISPR-Cas9 核酸内切酶介导的转基因技术创建 小鼠,并检查该变体的分子、电生理和行为后果。

结果

含有 GluN1-Y647S 的 NMDARs 对内源性激动剂和负性变构调节剂的敏感性发生改变,并且细胞表面转运减少。 小鼠全脑 GluN1 水平降低,海马中 NMDAR 介导的突触传递存在缺陷。在行为上, 小鼠表现出自发性癫痫发作、发声改变、肌肉力量、社交能力和解决问题能力的变化。

解读

Y647S 变体赋予复杂的 表型,这在很大程度上反映了 NMDAR 功能特性的减弱。因此, 小鼠在与 -NDD 临床特征和携带该变体的个体相关的领域表现出非典型行为。最终,本研究中完成的 小鼠的特征描述扩展了我们对 -NDD 潜在机制的理解,并为开发新型治疗方法提供了基础。

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