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Delta信号通路对非洲爪蟾视网膜中神经元多样性的调控

Regulation of neuronal diversity in the Xenopus retina by Delta signalling.

作者信息

Dorsky R I, Chang W S, Rapaport D H, Harris W A

机构信息

Department of Biology, University of California, San Diego, California 92093, USA.

出版信息

Nature. 1997 Jan 2;385(6611):67-70. doi: 10.1038/385067a0.

Abstract

To generate the variety of mature neurons and glia found in the developing retina, the competence of pluripotent progenitor cells to respond to extracellular signals must be controlled. Delta, a ligand of the Notch receptor, is a candidate for regulating progenitor competence on the grounds that activation of the pathway involving Notch and Delta can inhibit cellular differentiation. Here we test this possibility in the developing Xenopus retina by misexpression of Delta messenger RNA. We find that Delta-misexpressing cells with wild-type neighbours adopt earlier fates, primarily becoming ganglion cells and cone photoreceptors. Progenitors transfected with Delta later in development also produce rod photoreceptors, but not the latest-generated cell types, demonstrating the importance of timing in Delta function. We conclude that Delta signalling in the vertebrate retina is a basic regulatory mechanism that can be used to generate neuronal diversity.

摘要

为了生成发育中的视网膜中所发现的各种成熟神经元和神经胶质细胞,必须控制多能祖细胞对细胞外信号作出反应的能力。Notch受体的配体Delta是调节祖细胞能力的一个候选因素,因为涉及Notch和Delta的信号通路的激活能够抑制细胞分化。在此,我们通过Delta信使核糖核酸的错误表达,在非洲爪蟾发育中的视网膜中检验这种可能性。我们发现,与野生型邻居相邻的Delta错误表达细胞会更早地分化,主要分化为神经节细胞和视锥光感受器。在发育后期用Delta转染的祖细胞也会产生视杆光感受器,但不会产生最晚生成的细胞类型,这证明了时间对于Delta功能的重要性。我们得出结论,脊椎动物视网膜中的Delta信号传导是一种基本的调节机制,可用于产生神经元多样性。

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