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胚胎后期果蝇大脑中的神经元时间身份

Neuronal temporal identity in post-embryonic Drosophila brain.

作者信息

Yu Hung-Hsiang, Lee Tzumin

机构信息

Department of Neurobiology, University of Massachusetts Medical School, Worcester, MA 01605, USA.

出版信息

Trends Neurosci. 2007 Oct;30(10):520-6. doi: 10.1016/j.tins.2007.07.003. Epub 2007 Sep 6.

Abstract

Understanding how a vast number of neuron types derive from a limited number of neural progenitors remains a major challenge in developmental neurobiology. In the post-embryonic Drosophila brain, specific neuron types derive from specific progenitors at specific times. This suggests involvement of time-dependent cell fate determinants acting as 'temporal codes' along with lineage cues to specify neuronal cell fates. Interestingly, such temporal codes might be provided not only by several regulators acting in sequence, but also by the differential protein levels of the BTB-zinc finger nuclear protein Chinmo. Identifying temporal codes and determining their origins should allow us to elucidate how neuronal diversification occurs through protracted neurogenesis.

摘要

理解大量神经元类型如何从有限数量的神经祖细胞衍生而来,仍然是发育神经生物学中的一个重大挑战。在胚胎后期的果蝇大脑中,特定的神经元类型在特定时间从特定的祖细胞衍生而来。这表明时间依赖性细胞命运决定因素作为“时间编码”发挥作用,与谱系线索一起指定神经元细胞命运。有趣的是,这种时间编码可能不仅由依次作用的几种调节因子提供,还可能由BTB-锌指核蛋白Chinmo的不同蛋白质水平提供。识别时间编码并确定其起源,应该能让我们阐明神经元多样化是如何通过长时间的神经发生而发生的。

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