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视黄酸对斑马鱼后脑后部的动态和顺序模式形成

Dynamic and sequential patterning of the zebrafish posterior hindbrain by retinoic acid.

作者信息

Maves Lisa, Kimmel Charles B

机构信息

Institute of Neuroscience, 1254 University of Oregon, Eugene, OR 97403-1254, USA.

出版信息

Dev Biol. 2005 Sep 15;285(2):593-605. doi: 10.1016/j.ydbio.2005.07.015.

DOI:10.1016/j.ydbio.2005.07.015
PMID:16102743
Abstract

A prominent region of the vertebrate hindbrain is subdivided along the anterior-posterior axis into a series of seven segments, or rhombomeres. The identity of each rhombomere is specified by the expression of conserved transcription factors, including Krox-20, vHnf1, Val (Kreisler, Mafb) and several Hox proteins. Previous work has shown that retinoic acid (RA) signaling plays a critical role in regulating the expression of these factors and that more posterior rhombomeres require higher levels of RA than more anterior rhombomeres. Models to account for RA concentration dependency have proposed either a static RA gradient or increasing time periods of RA exposure. Here, we provide evidence against both of these models. We show that early zebrafish rhombomere-specification genes, including vhnf1 in r5-r6 and hoxd4a in r7, initiate expression sequentially in the hindbrain, each adjacent to the source of RA synthesis in paraxial mesoderm. By knocking down RA signaling, we show that progressively more posterior rhombomeres require increasingly higher levels of RA signaling, and vhnf1 and hoxd4a expression are particularly RA-dependent. RA synthesis is required just at the time of initiation, but not for maintenance, of vhnf1 and hoxd4a expression. Furthermore, a premature RA increase causes premature activation of vhnf1 and hoxd4a expression. Our results support a new model of dynamic RA action in the hindbrain, in which a temporally increasing source of RA is required to sequentially initiate progressively more posterior rhombomere identities.

摘要

脊椎动物后脑的一个显著区域沿前后轴被细分为一系列七个节段,即菱脑节。每个菱脑节的身份由保守转录因子的表达来确定,这些转录因子包括Krox - 20、vHnf1、Val(kreisler、Mafb)和几种Hox蛋白。先前的研究表明,视黄酸(RA)信号在调节这些因子的表达中起关键作用,并且更靠后的菱脑节比更靠前的菱脑节需要更高水平的RA。解释RA浓度依赖性的模型提出了静态RA梯度或RA暴露时间增加的观点。在这里,我们提供了反对这两种模型的证据。我们表明,早期斑马鱼菱脑节特异性基因,包括r5 - r6中的vhnf1和r7中的hoxd4a,在后脑中依次启动表达,每个基因都与近轴中胚层中RA合成的来源相邻。通过敲低RA信号,我们表明,越来越靠后的菱脑节需要越来越高水平的RA信号,并且vhnf1和hoxd4a的表达特别依赖于RA。RA合成仅在vhnf1和hoxd4a表达启动时是必需的,但对其维持不是必需的。此外,过早的RA增加会导致vhnf1和hoxd4a表达的过早激活。我们的结果支持了一种在后脑中动态RA作用的新模型,其中需要一个在时间上增加的RA来源来依次启动越来越靠后的菱脑节身份。

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