帕尔瓦布明
神经科学
前额叶皮质
加巴能
突触可塑性
长时程增强
脑源性神经营养因子
神经传递
兴奋性突触后电位
生物
神经营养因子
抑制性突触后电位
中间神经元
转录因子
遗传学
基因
受体
认知
作者
Kazuko Sakata,Newton H. Woo,Keri Martinowich,Joshua S. Greene,Robert J. Schloesser,Liya Shen,Bai Lu
标识
DOI:10.1073/pnas.0811431106
摘要
Transcription of Bdnf is controlled by multiple promoters, which drive expression of multiple transcripts encoding for the same protein. Promoter IV contributes significantly to activity-dependent brain-derived neurotrophic factor (BDNF) transcription. We have generated promoter IV mutant mice (BDNF-KIV) by inserting a GFP-STOP cassette within the Bdnf exon IV locus. This genetic manipulation results in disruption of promoter IV-mediated Bdnf expression. BDNF-KIV animals exhibited significant deficits in GABAergic interneurons in the prefrontal cortex (PFC), particularly those expressing parvalbumin, a subtype implicated in executive function and schizophrenia. Moreover, disruption of promoter IV-driven Bdnf transcription impaired inhibitory but not excitatory synaptic transmission recorded from layer V pyramidal neurons in the PFC. The attenuation of GABAergic inputs resulted in an aberrant appearance of spike-timing-dependent synaptic potentiation (STDP) in PFC slices derived from BDNF-KIV, but not wild-type littermates. These results demonstrate the importance of promoter IV-dependent Bdnf transcription in GABAergic function and reveal an unexpected regulation of STDP in the PFC by BDNF.
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