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自闭症相关神经黏附素-4 基因敲除小鼠损害大脑皮层内信息处理但不影响感觉传入。

Autism Related Neuroligin-4 Knockout Impairs Intracortical Processing but not Sensory Inputs in Mouse Barrel Cortex.

机构信息

Institute of Physiology, University Medical Center of the Johannes Gutenberg University Mainz, Duesbergweg 6, Mainz, Germany.

Department of Molecular Neurobiology, Max Planck Institute of Experimental Medicine, Hermann-Rein-Straße 3, Göttingen, Germany.

出版信息

Cereb Cortex. 2018 Aug 1;28(8):2873-2886. doi: 10.1093/cercor/bhx165.

Abstract

Neuroligin-4 (Nlgn4) is a cell adhesion protein that regulates synapse organization and function. Mutations in human NLGN4 are among the causes of autism spectrum disorders. In mouse, Nlgn4 knockout (KO) perturbs GABAergic synaptic transmission and oscillatory activity in hippocampus, and causes social interaction deficits. The complex profile of cellular and circuit changes that are caused by Nlgn4-KO is still only partly understood. Using Nlgn4-KO mice, we found that Nlgn4-KO increases the power in the alpha frequency band of spontaneous network activity in the barrel cortex under urethane anesthesia in vivo. Nlgn4-KO did not affect single-whisker-induced local field potentials, but suppressed the late evoked multiunit activity in vivo. Although Nlgn4-KO did not affect evoked EPSCs in layer 4 (L4) spiny stellate cells in acute thalamocortical slices elicited by electrical stimulation of thalamocortical inputs, it caused a lower frequency of both miniature (m) IPSCs and mEPSCs, and a decrease in the number of readily releasable vesicles at GABAergic and glutamatergic connections, weakening both excitatory and inhibitory transmission. However, Nlgn4 deficit strongly suppresses glutamatergic activity, shifting the excitation-inhibition balance to inhibition. We conclude that Nlgn4-KO does not influence the incoming whisker-mediated sensory information to the barrel cortex, but modifies intracortical information processing.

摘要

神经黏附素 4(Nlgn4)是一种细胞黏附蛋白,调节突触的组织和功能。人类 NLGN4 的突变是自闭症谱系障碍的原因之一。在小鼠中,Nlgn4 敲除(KO)扰乱了海马 GABA 能突触传递和振荡活动,并导致社交互动缺陷。Nlgn4-KO 引起的复杂的细胞和回路变化的特征仍然只是部分理解。使用 Nlgn4-KO 小鼠,我们发现 Nlgn4-KO 在体内乌拉坦麻醉下增加了桶状皮层自发网络活动的α频带功率。Nlgn4-KO 不影响单触须诱导的局部场电位,但抑制了体内的后期诱发多单位活动。尽管 Nlgn4-KO 不影响急性丘脑皮质切片中由丘脑皮质传入电刺激引起的 L4 棘状星形细胞的诱发 EPSC,但它导致 GABA 能和谷氨酸能连接的微小(m) IPSC 和 mEPSC 的频率降低,以及 GABA 能和谷氨酸能连接的可释放囊泡数量减少,从而减弱了兴奋和抑制传递。然而,Nlgn4 缺乏强烈抑制谷氨酸能活动,将兴奋-抑制平衡转移到抑制。我们得出结论,Nlgn4-KO 并不影响传入的触须介导的感觉信息到桶状皮层,但修饰了皮质内的信息处理。

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