帕尔瓦布明
神经科学
丘脑网状核
抑制性突触后电位
丘脑
生物
中间神经元
运动前神经元活动
兴奋性突触后电位
核心
突触后电位
网状结缔组织
补品(生理学)
神经传递
多巴胺能
神经元
爆裂
被盖腹侧区
钙结合蛋白
谷氨酸的
中脑网状结构
化学
钙显像
小脑
生物素
神经递质
细胞神经科学
中棘神经元
基底神经节
中脑
网状激活系统
电压依赖性钙通道
作者
Yubo Lai,Lulu Lü,Runfeng Sun,Junhui Lai,Yang Wang,Silin Chen,Shan Li,Liu Qinglian,Lei Zhou
标识
DOI:10.1523/jneurosci.1202-25.2026
摘要
Fast-spiking, nonadaptive inhibitory neurons in the thalamic reticular nucleus (TRN) critically gate the reciprocal communication between the thalamus and the cortex. Parvalbumin (PV) neurons express high levels of PV, the sole role of which appears to be calcium buffering. The significance of the PV protein-and its related high calcium-buffering capacity-under pathological conditions, especially in various neuropsychiatric disorders, is underappreciated. Deficiency of SHANK3, an important neuronal protein containing ankyrin, SH3, and PDZ, three canonical domains for protein recognition, causes behavioral changes relevant to autism spectrum disorders (ASDs). Here we report TRN PV neurons of Shank3-/- (exon 4-22 deletion) mice of either sex exhibit pronounced increases in burst firing occurrence, decreased tonic firing frequency, and faster dendritic calcium transient decay. We pinpointed reduced PV expression as the culprit and used the added buffer approach to confirm the decrease in calcium-buffering capacity in mutant neurons. Conversely, supplementing Shank3-/- PV neurons with extra EGTA reverses the abnormal action potential (AP) firing. In addition, the PV neurons from HCN2-/- mice exhibit consistent changes in neuronal excitability, PV expression, and calcium signaling. Together with the study of dopaminergic (DA) neurons in the ventral tegmental area (VTA), these results uncover reduced PV expression, calcium-buffering capacity, and altered neuronal excitability in Shank3-/- and HCN2-/- mice. This pathway, downstream of Shank3 deficiency and HCN channelopathy, may form an important pathological basis not only for ASD but also other neuropsychiatric disorders.
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