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首页> 外文期刊>eLife journal >An alternative splicing switch shapes neurexin repertoires in principal neurons versus interneurons in the mouse hippocampus
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An alternative splicing switch shapes neurexin repertoires in principal neurons versus interneurons in the mouse hippocampus

机译:另一种剪接开关可改变小鼠海马中主要神经元与中间神经元的神经毒素组成

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The unique anatomical and functional features of principal and interneuron populations are critical for the appropriate function of neuronal circuits. Cell type-specific properties are encoded by selective gene expression programs that shape molecular repertoires and synaptic protein complexes. However, the nature of such programs, particularly for post-transcriptional regulation at the level of alternative splicing is only beginning to emerge. We here demonstrate that transcripts encoding the synaptic adhesion molecules neurexin-1,2,3 are commonly expressed in principal cells and interneurons of the mouse hippocampus but undergo highly differential, cell type-specific alternative splicing. Principal cell-specific neurexin splice isoforms depend on the RNA-binding protein Slm2. By contrast, most parvalbumin-positive (PV+) interneurons lack Slm2, express a different neurexin splice isoform and co-express the corresponding splice isoform-specific neurexin ligand Cbln4. Conditional ablation of Nrxn alternative splice insertions selectively in PV+ cells results in elevated hippocampal network activity and impairment in a learning task. Thus, PV-cell-specific alternative splicing of neurexins is critical for neuronal circuit function.
机译:主神经元和中间神经元的独特解剖学和功能特征对于神经元回路的适当功能至关重要。细胞类型特有的性质由塑造分子组成和突触蛋白复合物的选择性基因表达程序编码。但是,这种程序的性质,特别是在选择性剪接水平上的转录后调控,才刚刚开始出现。我们在这里证明,编码突触粘附分子神经毒素-1、2、3的转录本通常在小鼠海马的主要细胞和中间神经元中表达,但会经历高度差异性,特定细胞类型的选择性剪接。主要的细胞特异性神经毒素剪接亚型取决于RNA结合蛋白Slm2。相比之下,大多数小白蛋白阳性(PV +)中性神经元缺乏Slm2,表达不同的神经毒素剪接同工型并共表达相应的剪接异构体特异性神经毒素配体Cbln4。在PV +细胞中选择性地消融Nrxn替代剪接插入物会导致海马网络活动升高,并损害学习任务。因此,神经毒素的PV细胞特异性替代剪接对于神经元电路功能至关重要。

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