Russek-Blum Niva, Gutnick Amos, Nabel-Rosen Helit, Blechman Janna, Staudt Nicole, Dorsky Richard I, Houart Corinne, Levkowitz Gil
Department of Molecular Cell Biology, Weizmann Institute of Science, Rehovot 76100, Israel.
Development. 2008 Oct;135(20):3401-13. doi: 10.1242/dev.024232. Epub 2008 Sep 17.
We have explored the effects of robust neural plate patterning signals, such as canonical Wnt, on the differentiation and configuration of neuronal subtypes in the zebrafish diencephalon at single-cell resolution. Surprisingly, perturbation of Wnt signaling did not have an overall effect on the specification of diencephalic fates, but selectively affected the number of dopaminergic (DA) neurons. We identified the DA progenitor zone in the diencephalic anlage of the neural plate using a two-photon-based uncaging method and showed that the number of non-DA neurons derived from this progenitor zone is not altered by Wnt attenuation. Using birthdating analysis, we determined the timing of the last cell division of DA progenitors and revealed that the change in DA cell number following Wnt inhibition is not due to changes in cell cycle exit kinetics. Conditional inhibition of Wnt and of cell proliferation demonstrated that Wnt restricts the number of DA progenitors during a window of plasticity, which occurs at primary neurogenesis. Finally, we demonstrated that Wnt8b is a modulator of DA cell number that acts through the Fz8a (Fzd8a) receptor and its downstream effector Lef1, and which requires the activity of the Fezl (Fezf2) transcription factor for this process. Our data show that the differential response of distinct neuronal populations to the Wnt signal is not a simple interpretation of their relative anteroposterior position. This study also shows, for the first time, that diencephalic DA population size is modulated inside the neural plate much earlier than expected, concomitant with Wnt-mediated regional patterning events.
我们以单细胞分辨率探究了强大的神经板模式化信号(如经典Wnt信号)对斑马鱼间脑神经元亚型分化和构型的影响。令人惊讶的是,Wnt信号通路的扰动对间脑命运的特化没有整体影响,但选择性地影响了多巴胺能(DA)神经元的数量。我们使用基于双光子的光解笼方法在神经板的间脑原基中鉴定出DA祖细胞区,并表明源自该祖细胞区的非DA神经元数量不会因Wnt减弱而改变。通过出生时间分析,我们确定了DA祖细胞最后一次细胞分裂的时间,并揭示Wnt抑制后DA细胞数量的变化并非由于细胞周期退出动力学的改变。对Wnt和细胞增殖的条件性抑制表明,Wnt在可塑性窗口期间限制了DA祖细胞的数量,该窗口发生在初级神经发生阶段。最后,我们证明Wnt8b是DA细胞数量的调节因子,它通过Fz8a(Fzd8a)受体及其下游效应因子Lef1发挥作用,并且在此过程中需要Fezl(Fezf2)转录因子的活性。我们的数据表明,不同神经元群体对Wnt信号的差异反应并非对其相对前后位置的简单解读。这项研究还首次表明,间脑DA群体大小在神经板内的调节比预期早得多,与Wnt介导的区域模式化事件同时发生。