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Beyond the neckless phenotype: influence of reduced retinoic acid signaling on motor neuron development in the zebrafish hindbrain

机译:超越颈项表型:视黄酸信号减少对斑马鱼后脑运动神经元发育的影响

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摘要

Retinoic acid (RA) has been identified as a key signal involved in the posteriorization of vertebrate neural ectoderm. The main biosynthetic enzyme responsible for RA signaling in the hindbrain and spinal cord is Raldh2. However, necklesslraldh2-mutant (nls) zebrafish exhibit only mild degrees of anteriorization in the neural ectoderm, compared to full vitamin A deficiency in amniotes and the Raldh2(-/-) mouse. Here we investigated the role of RA during neuronal development in the zebrafish hindbrain and anterior spinal cord using DEAB, an inhibitor of retinaldehyde dehydrogenases. We show that the nls hindbrain and spinal cord are not fully devoid of RA, since blocking Raldh-mediated RA signaling leads to a more severe hindbrain phenotype than in nls. The anteroposterior distribution of branchiomotor neurons in the facial and more posterior nuclei depends on full RA signaling throughout early and late gastrula stages. In contrast, inhibition of RA synthesis after gastrulation reduces the number of branchiomotor neurons in the vagal nucleus, but has no effect on anteroposterior cell fates. In addition, blockage of RA-mediated signaling not only interferes with the differentiation of branchiomotor neurons and their axons in the hindbrain, but also affects the development of the posterior lateral line nerve. (C) 2004 Elsevier Inc. All rights reserved.
机译:维甲酸(RA)已被确定为脊椎动物神经外胚层后部化的关键信号。 Raldh2是负责后脑和脊髓中RA信号传导的主要生物合成酶。但是,与羊膜动物和Raldh2(-/-)小鼠中的维生素A缺乏症相比,necklesslraldh2-mutant(nls)斑马鱼在神经外胚层中仅表现出轻度的前化程度。在这里,我们使用视黄醛脱氢酶抑制剂DEAB调查了斑马鱼后脑和脊髓前部神经元发育过程中RA的作用。我们显示nls后脑和脊髓并不完全缺乏RA,因为阻断Raldh介导的RA信号传导会导致比nls更严重的后脑表型。面部和后核中分支运动神经元的前后分布取决于整个胃小节早期和晚期的完全RA信号传导。相反,胃化后抑制RA合成会减少迷走神经核中分支运动神经元的数量,但对前后细胞的命运没有影响。另外,RA介导的信号传导的阻断不仅干扰后脑分支运动神经元及其轴突的分化,而且还影响了后侧线神经的发育。 (C)2004 Elsevier Inc.保留所有权利。

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