首页> 外文期刊>The Journal of Neuroscience: The Official Journal of the Society for Neuroscience >Early formation of GABAergic synapses governs the development of adult-born neurons in the olfactory bulb
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Early formation of GABAergic synapses governs the development of adult-born neurons in the olfactory bulb

机译:GABA能突触的早期形成控制嗅球中成年神经元的发育

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In mammals, olfactory bulb granule cells (GCs) are generated throughout life in the subventricular zone. GABAergic inputs onto newborn neurons likely regulate their maturation, but the details of this process remain still elusive. Here, we investigated the differentiation, synaptic integration, and survival of adult-born GCs when their afferent GABAergic inputs are challenged by conditional gene targeting. Migrating GC precursors were targeted with Cre-eGFP-expressing lentiviral vectors in mice with a floxed gene encoding the GABA A receptorα2-subunit (i.e., Gabra2). Ablation of theα2-subunit did not affect GC survival but dramatically delayed their maturation. We found a reduction in postsynaptic α2-subunit and gephyrin clusters accompanied by a decrease in the frequency and amplitude of GABAergic postsynaptic currents beginning~14 d post-injection (dpi). In addition, mutant cells exhibited altered dendritic branching and spine density. Spine loss appeared with mislocation of glutamatergic synapses on dendritic shafts and a reduction of spontaneous glutamatergic postsynaptic currents, underscoring the relevance of afferent GABAergic transmission for a proper synaptic integration of newborn GCs. To test the role of GABAergic signaling during much early stages of GC maturation, we used a genetic strategy to selectively inactivate Gabra2 in precursor cells of the subventricular zone. In these mice, labeling of newborn GCs with eGFP lentiviruses revealed similar morphological alterations as seen on delayed Gabra2 inactivation in migrating neuroblasts, with reduced dendritic branching and spine density at 7 dpi. Collectively, these results emphasize the critical role of GABAergic synaptic signaling for structural maturation of adult-born GCs and formation of glutamatergic synapses.
机译:在哺乳动物中,嗅球颗粒细胞(GCs)终生在心室下区域产生。新生神经元的GABA能量输入可能会调节其成熟度,但这一过程的细节仍然难以捉摸。在这里,我们研究了成年出生的GC的传入GABA能量输入受到条件基因靶向挑战时的分化,突触整合和存活。在具有编码GABA A受体α2-亚基(即Gabra2)的亚麻基因的小鼠中,将表达Cre-eGFP的慢病毒载体靶向迁移的GC前体。 α2-亚基的消融不影响GC的存活,但显着延迟了它们的成熟。我们发现突触后α2-亚基和gephyrin簇减少,同时注射后14 d(dpi)开始的GABA能突触后电流的频率和幅度降低。此外,突变细胞表现出改变的树突分支和脊柱密度。脊柱丢失的出现是由于树突状轴上的谷氨酸能突触错位和自发性谷氨酸能突触后突触电流减少,从而强调了传入GABA能传递与新生儿GC正确突触整合的相关性。为了测试GC成熟的很多早期阶段中GABA能信号的作用,我们使用了一种遗传策略来选择性灭活脑室下区域前体细胞中的Gabra2。在这些小鼠中,用eGFP慢病毒标记新生GC揭示了相似的形态变化,如在迁移的神经母细胞中延迟的Gabra2失活所观察到的,树突分支和脊柱密度在7 dpi降低。总的来说,这些结果强调了GABA能突触信号在成年出生的GC的结构成熟和谷氨酸能突触形成中的关键作用。

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