首页> 美国卫生研究院文献>eNeuro >Caveolin1 Identifies a Specific Subpopulation of Cerebral Cortex Callosal Projection Neurons (CPN) Including Dual Projecting Cortical Callosal/Frontal Projection Neurons (CPN/FPN)
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Caveolin1 Identifies a Specific Subpopulation of Cerebral Cortex Callosal Projection Neurons (CPN) Including Dual Projecting Cortical Callosal/Frontal Projection Neurons (CPN/FPN)

机译:Caveolin1识别脑皮层Cor投射神经元(CPN)的特定亚群包括双投射皮层Call /额突神经元(CPN / FPN)

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摘要

The neocortex is composed of many distinct subtypes of neurons that must form precise subtype-specific connections to enable the cortex to perform complex functions. Callosal projection neurons (CPN) are the broad population of commissural neurons that connect the cerebral hemispheres via the corpus callosum (CC). Currently, how the remarkable diversity of CPN subtypes and connectivity is specified, and how they differentiate to form highly precise and specific circuits, are largely unknown. We identify in mouse that the lipid-bound scaffolding domain protein Caveolin 1 (CAV1) is specifically expressed by a unique subpopulation of Layer V CPN that maintain dual ipsilateral frontal projections to premotor cortex. CAV1 is expressed by over 80% of these dual projecting callosal/frontal projection neurons (CPN/FPN), with expression peaking early postnatally as axonal and dendritic targets are being reached and refined. CAV1 is localized to the soma and dendrites of CPN/FPN, a unique population of neurons that shares information both between hemispheres and with premotor cortex, suggesting function during postmitotic development and refinement of these neurons, rather than in their specification. Consistent with this, we find that Cav1 function is not necessary for the early specification of CPN/FPN, or for projecting to their dual axonal targets. CPN subtype-specific expression of Cav1 identifies and characterizes a first molecular component that distinguishes this functionally unique projection neuron population, a population that expands in primates, and is prototypical of additional dual and higher-order projection neuron subtypes.
机译:新皮层由神经元的许多不同亚型组成,必须形成精确的亚型特异性连接才能使皮层执行复杂的功能。 os投射神经元(CPN)是通过call体(CC)连接大脑半球的连合神经元的广泛群体。当前,如何指定CPN子类型和连通性的显着多样性,以及如何区分它们以形成高精度和特定的电路,目前尚不清楚。我们在小鼠中识别出脂质结合的支架结构域蛋白小窝蛋白1(CAV1)是由V层CPN的独特亚群特异性表达的,该亚群保持双同侧额头投射到运动前皮质。超过80%的这种双投射call /额突神经元(CPN / FPN)表达了CAV1,随着轴突和树突状靶标的达到和完善,其表达在出生后就达到了高峰。 CAV1定位于CPN / FPN的体细胞和树突中,这是一种独特的神经元群体,在半球之间和运动前皮层之间共享信息,提示这些神经元在有丝分裂后的发育和细化过程中起作用,而不是在其规格中。与此相符,我们发现Cav1功能对于CPN / FPN的早期规范或投影到其双重轴突靶标不是必需的。 Cav1的CPN亚型特异性表达鉴定并表征了区分此功能独特的投射神经元群体的第一分子成分,该分子在灵长类中扩展,并且是其他双重和高阶投射神经元亚型的典型代表。

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