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Neurofilament light interaction with GluN1 modulates neurotransmission and schizophrenia-associated behaviors

机译:神经丝光与GluN1的相互作用调节神经传递和精神分裂症相关的行为。

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Neurofilament (NFL) proteins have recently been found to play unique roles in synapses. NFL is known to interact with the GluN1 subunit of N -methyl- d -aspartic acid (NMDAR) and be reduced in schizophrenia though functional consequences are unknown. Here we investigated whether the interaction of NFL with GluN1 modulates synaptic transmission and schizophrenia-associated behaviors. The interaction of NFL with GluN1 was assessed by means of molecular, pharmacological, electrophysiological, magnetic resonance spectroscopy (MRS), and schizophrenia-associated behavior analyses. NFL deficits cause an NMDAR hypofunction phenotype including abnormal hippocampal function, as seen in schizophrenia. NFL?/? deletion in mice reduces dendritic spines and GluN1 protein levels, elevates ubiquitin-dependent turnover of GluN1 and hippocampal glutamate measured by MRS, and depresses hippocampal long-term potentiation. NMDAR-related behaviors are also impaired, including pup retrieval, spatial and social memory, prepulse inhibition, night-time activity, and response to NMDAR antagonist, whereas motor deficits are minimal. Importantly, partially lowering NFL in NFL+/? mice to levels seen regionally in schizophrenia, induced similar but milder NMDAR-related synaptic and behavioral deficits. Our findings support an emerging view that central nervous system neurofilament subunits including NFL in the present report, serve distinctive, critical roles in synapses relevant to neuropsychiatric diseases.
机译:最近发现神经丝(NFL)蛋白在突触中起独特作用。已知NFL与N-甲基-d-天冬氨酸(NMDAR)的GluN1亚基相互作用,并且在精神分裂症中会降低,尽管功能后果尚不明确。在这里,我们调查了NFL与GluN1的相互作用是否调节突触传递和精神分裂症相关行为。 NFL与GluN1的相互作用通过分子,药理,电生理,磁共振波谱(MRS)和精神分裂症相关行为分析进行评估。 NFL缺乏会导致NMDAR功能低下的表型,包括精神分裂症中所见的海马功能异常。 NFL?/?小鼠中的缺失减少了树突棘和GluN1蛋白的水平,提高了MRS所测量的GluN1和海马谷氨酸的泛素依赖性代谢,并抑制了海马的长期增强作用。 NMDAR相关的行为也受到损害,包括幼犬检索,空间和社交记忆,前脉冲抑制,夜间活动以及对NMDAR拮抗剂的反应,而运动障碍则最小。重要的是,部分降低NFL + /中的NFL?小鼠达到在精神分裂症中局部观察到的水平,可诱发类似但较轻的NMDAR相关突触和行为缺陷。我们的发现支持了一种新兴观点,即本报告中包括NFL在内的中枢神经系统神经丝亚基在与神经精神疾病相关的突触中起着独特的关键作用。

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