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Cited2 条件性敲除导致的非典型新皮质发育异常与神经发育障碍相关的行为缺陷。

Atypical Neocortical Development in the Cited2 Conditional Knockout Leads to Behavioral Deficits Associated with Neurodevelopmental Disorders.

机构信息

Department of Biology, Program in Neuroscience, Syracuse University, Syracuse NY, United States.

Department of Biology, Program in Neuroscience, Syracuse University, Syracuse NY, United States.

出版信息

Neuroscience. 2021 Feb 10;455:65-78. doi: 10.1016/j.neuroscience.2020.12.009. Epub 2020 Dec 17.

Abstract

The mammalian neocortex develops from a single layer of neuroepithelial cells to form a six-layer heterogeneous mosaic of differentiated neurons and glial cells. This process requires a complex choreography of temporally and spatially restricted transcription factors and epigenetic regulators. Even subtle disruptions in this regulation can alter the way the neocortex forms and functions, leading to a neurodevelopmental disorder. One epigenetic regulator that is essential for the precise development of the neocortex is CITED2 (CBP/p300 Interacting Transactivator with ED-rich termini). Cited2 is highly expressed by intermediate progenitor cells in the subventricular zone during the generation of the superficial layers of the neocortex. A forebrain-specific conditional knockout of Cited2 (cKO) exhibits reduced proliferation of intermediate progenitor cells embryonically, leading to reduced thickness of the superficial layers and reduced corpus callosum (CC) volume postnatally. Further, the Cited2 cKO display disruptions in balanced neocortical arealization, with a specific reduction in the somatosensory neocortical length, and dysregulation of precise, area-specific neuronal connectivity. Here, we explore the behavioral consequences resulting from this aberrant neocortical development. We demonstrate that Cited2 cKO mice display decreased maternal separation-induced ultrasonic vocalizations (USVs) as neonates, and an increase in rearing behavior and lack of habituation following repeated acoustic startle as adults. They do not display alterations in anxiety-like behavior, overall locomotor activity, or social interactions. Together with the morphological, molecular, and connectivity disruptions, these results identify the Cited2 cKO neocortex as an ideal system to study mechanisms underlying neurodevelopmental and neuroanatomical disruptions with relevance to human neurodevelopmental disorders.

摘要

哺乳动物新皮层由单层神经上皮细胞发育而来,形成具有六层异质分化神经元和神经胶质细胞的镶嵌体。这个过程需要一系列复杂的、时间和空间受限的转录因子和表观遗传调节剂的协调作用。即使这种调节有细微的干扰,也会改变新皮层的形成和功能方式,导致神经发育障碍。一种对新皮层精确发育至关重要的表观遗传调节剂是 CITED2(CBP/p300 相互作用转录激活因子与 ED 富含末端)。Cited2 在新皮层浅表层生成过程中,在室下区的中间祖细胞中高度表达。大脑特异性条件敲除 Cited2(cKO)在胚胎期会导致中间祖细胞增殖减少,导致新皮层浅表层厚度减少和胼胝体(CC)体积减少。此外,Cited2 cKO 表现出平衡的新皮层区域化中断,体感新皮层长度特异性减少,以及精确的、区域特异性的神经元连接失调。在这里,我们探讨了这种异常新皮层发育导致的行为后果。我们证明 Cited2 cKO 小鼠在新生时表现出母鼠分离诱导的高频超声发声(USVs)减少,成年时表现出更多的站立行为和缺乏习惯化。它们在焦虑样行为、整体运动活动或社交互动方面没有改变。结合形态学、分子和连接性的破坏,这些结果表明 Cited2 cKO 新皮层是研究与人类神经发育障碍相关的神经发育和神经解剖学破坏机制的理想系统。

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