CA1海马区不同的层下前馈抑制回路的发育需要Satb2。

IF 4.4 2区 医学 Q1 NEUROSCIENCES
Meretta A Hanson, Noor Bibi, Alireza Safa, Devipriyanka Nagarajan, Alec H Marshall, Aidan C Johantges, Jason C Wester
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引用次数: 0

摘要

CA1海马中的锥体细胞(PCs)可以根据其径向位置分为深部或浅层,并组织成不同类型的特定电路,以进行差异信息处理。具体来说,与深层PCs相比,浅层PCs从表达小白蛋白(PV)的中间神经元接收到的抑制性突触更少,导致CA3 Schaffer侧枝输入的前馈抑制更弱。在小鼠实验中,我们研究了CA1 PC分化的机制和这种抑制回路基序的发展。我们发现转录调节因子SATB2是新皮层锥体细胞分化所必需的,在出生后早期发育过程中,SATB2在浅表PCs中选择性表达。为了研究其在CA1中的作用,我们使用雄性和雌性Emx1IRES-Cre;Satb2flox/flox小鼠,在胚胎发育过程中有条件地敲除锥体细胞中的Satb2。Satb2的缺失导致CA3 Schaffer侧支输入对浅层pc的前馈抑制增加,这与对照小鼠对深层pc的观察结果相匹配。通过对pc和PV+中间神经元的全细胞记录,我们发现这是由于从PV+中间神经元到突变的表层pc的单一抑制性突触连接的强度增加。突触强度的调节仅限于抑制性突触;从CA3到CA1 PCs和从CA1 PCs到PV+中间神经元的兴奋性突触连接不受Satb2缺失的影响。最后,我们发现在突触发生过程中,Satb2在浅表PCs中的表达对于抑制PV+中间神经元突触的形成是必要的。因此,出生后早期SATB2在浅表pc中的表达对于CA1的偏前馈抑制的发展是必要的。CA1海马的深层和浅层锥体细胞(PCs)是不同的亚型,它们整合到不同的回路中,为大脑的其他部分提供独特的海马计算。决定每个PC亚型的身份和电路集成的机制尚不清楚。在这里,我们发现转录调节因子Satb2在浅表PCs中的表达对于抑制PV+中间神经元在早期发育过程中形成抑制性突触是必要的。在成熟的电路中,这对于减少CA3 Schaffer侧接输入对浅层pc的前馈抑制至关重要。我们的数据为海马体中细胞类型特异性回路的发展提供了见解,这对于确定它们如何支持学习和记忆的功能至关重要。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Development of Differential Sublaminar Feedforward Inhibitory Circuits in CA1 Hippocampus Requires Satb2.

Pyramidal cells (PCs) in CA1 hippocampus can be classified by their radial position as deep or superficial and organize into subtype-specific circuits necessary for differential information processing. Specifically, superficial PCs receive fewer inhibitory synapses from parvalbumin (PV)-expressing interneurons than deep PCs, resulting in weaker feedforward inhibition of input from CA3 Schaffer collaterals. Using mice, we investigated mechanisms underlying CA1 PC differentiation and the development of this inhibitory circuit motif. We found that the transcriptional regulator SATB2, which is necessary for pyramidal cell differentiation in the neocortex, is selectively expressed in superficial PCs during early postnatal development. To investigate its role in CA1, we conditionally knocked out Satb2 from pyramidal cells during embryonic development using both male and female Emx1IRES-Cre; Satb2flox/flox mice. Loss of Satb2 resulted in increased feedforward inhibition of CA3 Schaffer collateral input to superficial PCs, which matched that observed to deep PCs in control mice. Using paired whole-cell recordings between PCs and PV+ interneurons, we found this was due to an increase in the strength of unitary inhibitory synaptic connections from PV+ interneurons to mutant superficial PCs. Regulation of synapse strength was restricted to inhibitory synapses; excitatory synaptic connections from CA3 to CA1 PCs and CA1 PCs to PV+ interneurons were not affected by loss of Satb2 Finally, we show that SATB2 expression in superficial PCs is necessary to suppress the formation of synapses from PV+ interneurons during synaptogenesis. Thus, early postnatal expression of SATB2 in superficial PCs is necessary for the development of biased feedforward inhibition in CA1.

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来源期刊
Journal of Neuroscience
Journal of Neuroscience 医学-神经科学
CiteScore
9.30
自引率
3.80%
发文量
1164
审稿时长
12 months
期刊介绍: JNeurosci (ISSN 0270-6474) is an official journal of the Society for Neuroscience. It is published weekly by the Society, fifty weeks a year, one volume a year. JNeurosci publishes papers on a broad range of topics of general interest to those working on the nervous system. Authors now have an Open Choice option for their published articles
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