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CDX4与视黄酸相互作用以定位后脑-脊髓过渡区。

CDX4 and retinoic acid interact to position the hindbrain-spinal cord transition.

作者信息

Chang Jessie, Skromne Isaac, Ho Robert K

机构信息

Committee on Developmental Biology, University of Chicago, Chicago, IL 60637, USA.

Department of Biology, University of Miami, Coral Gables, FL 33146, USA.

出版信息

Dev Biol. 2016 Feb 15;410(2):178-189. doi: 10.1016/j.ydbio.2015.12.025. Epub 2016 Jan 6.

Abstract

The sub-division of the posterior-most territory of the neural plate results in the formation of two distinct neural structures, the hindbrain and the spinal cord. Although many of the molecular signals regulating the development of these individual structures have been elucidated, the mechanisms involved in delineating the boundary between the hindbrain and spinal cord remain elusive. Two molecules, retinoic acid (RA) and the Cdx4 transcription factor have been previously implicated as important regulators of hindbrain and spinal cord development, respectively. Here, we provide evidence that suggests multiple regulatory interactions occur between RA signaling and the Cdx4 transcription factor to establish the anterior-posterior (AP) position of the transition between the hindbrain and spinal cord. Using chemical inhibitors to alter RA concentrations and morpholinos to knock-down Cdx4 function in zebrafish, we show that Cdx4 acts to prevent RA degradation in the presumptive spinal cord domain by suppressing expression of the RA degradation enzyme, Cyp26a1. In the hindbrain, RA signaling modulates its own concentration by activating the expression of cyp26a1 and inhibiting the expansion of cdx4. Therefore, interactions between Cyp26a1 and Cdx4 modulate RA levels along the AP axis to segregate the posterior neural plate into the hindbrain and spinal cord territories.

摘要

神经板最靠后的区域细分会导致形成两种不同的神经结构,即后脑和脊髓。尽管许多调节这些个体结构发育的分子信号已被阐明,但划定后脑和脊髓之间边界的机制仍不清楚。此前,视黄酸(RA)和Cdx4转录因子这两种分子分别被认为是后脑和脊髓发育的重要调节因子。在此,我们提供的证据表明,RA信号传导和Cdx4转录因子之间发生了多种调节相互作用,以确立后脑和脊髓之间过渡区域的前后(AP)位置。通过使用化学抑制剂改变RA浓度以及使用吗啉代寡核苷酸敲低斑马鱼中Cdx4的功能,我们发现Cdx4通过抑制RA降解酶Cyp26a1的表达来防止RA在假定的脊髓区域降解。在后脑中,RA信号传导通过激活cyp26a1的表达并抑制cdx4的扩展来调节其自身浓度。因此,Cyp26a1和Cdx4之间的相互作用沿AP轴调节RA水平,以将后神经板分隔为后脑和脊髓区域。

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