Guinazu Maria Flavia, Chambers David, Lumsden Andrew, Kiecker Clemens
MRC Centre for Developmental Neurobiology, Guy's Hospital Campus, King's College, London SE1 1UL, UK.
Neural Dev. 2007 Nov 13;2:25. doi: 10.1186/1749-8104-2-25.
The developing vertebrate brain is patterned first by global signalling gradients that define crude anteroposterior and dorsoventral coordinates, and subsequently by local signalling centres (organisers) that refine cell fate assignment within pre-patterned regions. The interface between the prethalamus and the thalamus, the zona limitans intrathalamica (ZLI), is one such local signalling centre that is essential for the establishment of these major diencephalic subdivisions by secreting the signalling factor Sonic hedgehog. Various models for ZLI formation have been proposed, but a thorough understanding of how this important local organiser is established is lacking.
Here, we describe tissue explant experiments in chick embryos aimed at characterising the roles of different forebrain areas in ZLI formation. We found that: the ZLI becomes specified unexpectedly early; flanking regions are required for its characteristic morphogenesis; ZLI induction can occur independently from ventral tissues; interaction between any prechordal and epichordal neuroepithelial tissue anterior to the midbrain-hindbrain boundary is able to generate a ZLI; and signals from the dorsal diencephalon antagonise ZLI formation. We further show that a localised source of retinoic acid in the dorsal diencephalon is a likely candidate to mediate this inhibitory signal.
Our results are consistent with a model where planar, rather than vertical, signals position the ZLI at early stages of neural development and they implicate retinoic acid as a novel molecular cue that determines its dorsoventral extent.
发育中的脊椎动物大脑首先由定义粗略前后和背腹坐标的全局信号梯度进行模式化,随后由局部信号中心(组织者)在预模式化区域内细化细胞命运分配。丘脑前区和丘脑之间的界面,即丘脑内界带(ZLI),就是这样一个局部信号中心,它通过分泌信号因子音猬因子对这些主要的间脑亚区的建立至关重要。已经提出了各种关于ZLI形成的模型,但对于这个重要的局部组织者是如何建立的,仍缺乏透彻的理解。
在这里,我们描述了针对鸡胚组织外植体实验,旨在表征不同前脑区域在ZLI形成中的作用。我们发现:ZLI的特化出人意料地早;其特征性形态发生需要侧翼区域;ZLI的诱导可以独立于腹侧组织发生;中脑-后脑边界前方的任何脊索前和脊索上神经上皮组织之间的相互作用都能够产生一个ZLI;并且来自间脑背侧的信号拮抗ZLI的形成。我们进一步表明,间脑背侧局部的视黄酸来源可能是介导这种抑制信号的候选者。
我们的结果与一个模型一致,即在神经发育早期,平面信号而非垂直信号定位ZLI,并且表明视黄酸是决定其背腹范围的一种新的分子线索。