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Mini-Symposium: Molecular Pathways Controlling Development of Thalamus and Hypothalamus: From Neural Specification to Circuit Formation

机译:小型专题讨论会:控制丘脑和下丘脑发育的分子途径:从神经规范到电路形成

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摘要

The embryonic diencephalon gives rise to the vertebrate thalamus and hypothalamus, which play essential roles in sensory information processing and control of physiological homeostasis and behavior, respectively. In this review, we present new steps toward characterizing the molecular pathways that control development of these structures, based on findings in a variety of model organisms. We highlight advances in understanding how early regional patterning is orchestrated through the action of secreted signaling molecules such as Sonic hedgehog and fibroblast growth factors. We address the role of individual transcription factors in control of the regional identity and neural differentiation within the developing diencephalon, emphasizing the contribution of recent large-scale gene expression studies in providing an extensive catalog of candidate regulators of hypothalamic neural cell fate specification. Finally, we evaluate the molecular mechanisms involved in the experience-dependent development of both thalamo-cortical and hypothalamic neural circuitry.
机译:胚胎间脑产生脊椎动物丘脑和下丘脑,它们分别在感觉信息处理和生理稳态和行为控制中起重要作用。在这篇综述中,我们根据各种模型生物的发现,提出了表征控制这些结构发展的分子途径的新步骤。我们着重介绍在了解早期区域模式如何通过分泌的信号分子(如声波刺猬和成纤维细胞生长因子)的作用来协调方面的进展。我们解决了个体转录因子在控制中脑发育过程中区域身份和神经分化中的作用,强调了最近大规模基因表达研究在提供下丘脑神经细胞命运规范的广泛候选调节子中的作用。最后,我们评估了依赖于丘脑皮层和下丘脑神经回路的经验发展的分子机制。

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