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皮质中间神经元的发育性细胞类型转换导致皮质振荡出现选择性缺陷。

A developmental cell-type switch in cortical interneurons leads to a selective defect in cortical oscillations.

作者信息

Takada Naoki, Pi Hyun Jae, Sousa Vitor H, Waters Jack, Fishell Gord, Kepecs Adam, Osten Pavel

机构信息

Cold Spring Harbor Laboratory, Cold Spring Harbor, New York 11724, USA.

Smilow Neuroscience Program, the Department of Cell Biology, New York University, New York, New York 10016, USA.

出版信息

Nat Commun. 2014 Oct 30;5:5333. doi: 10.1038/ncomms6333.

Abstract

The cellular diversity of interneurons in the neocortex is thought to reflect subtype-specific roles of cortical inhibition. Here we ask whether perturbations to two subtypes--parvalbumin-positive (PV+) and somatostatin-positive (SST+) interneurons--can be compensated for with respect to their contributions to cortical development. We use a genetic cell fate switch to delete both PV+ and SST+ interneurons selectively in cortical layers 2-4 without numerically changing the total interneuron population. This manipulation is compensated for at the level of synaptic currents and receptive fields (RFs) in the somatosensory cortex. By contrast, we identify a deficit in inhibitory synchronization in vitro and a large reduction in cortical gamma oscillations in vivo. This reveals that, while the roles of inhibition in establishing cortical inhibitory/excitatory balance and RFs can be subserved by multiple interneuron subtypes, gamma oscillations depend on cellular properties that cannot be compensated for--likely, the fast signalling properties of PV+ interneurons.

摘要

新皮层中抑制性神经元的细胞多样性被认为反映了皮层抑制的亚型特异性作用。在此,我们探讨对两种亚型——小白蛋白阳性(PV+)和生长抑素阳性(SST+)抑制性神经元——的扰动在其对皮层发育的贡献方面是否能够得到代偿。我们使用一种遗传细胞命运转换方法,在皮层第2 - 4层中选择性地删除PV+和SST+抑制性神经元,而不改变抑制性神经元的总数。这种操作在体感皮层的突触电流和感受野(RFs)水平上得到了代偿。相比之下,我们在体外发现了抑制同步性的缺陷,并且在体内发现皮层伽马振荡大幅减少。这表明,虽然抑制在建立皮层抑制/兴奋平衡和感受野方面的作用可以由多种抑制性神经元亚型来承担,但伽马振荡依赖于无法代偿的细胞特性——很可能是PV+抑制性神经元的快速信号特性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/91cc/4220465/d7ef1f44c2c4/ncomms6333-f1.jpg

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