Lindgens Dirk, Holstein Thomas W, Technau Ulrich
Molecular Cell Biology, Darmstadt University of Technology, Schnittspahnstrasse 10, 64287 Darmstadt, Germany.
Development. 2004 Jan;131(1):191-201. doi: 10.1242/dev.00903.
Cnidaria are the first class of organisms in animal evolution with a nervous system. The cnidarian Hydra has two types of neuronal cell, nerve cells and nematocytes. Both differentiate from the same pool of pluripotent stem cells. Yet, the molecular regulation of neural differentiation in Hydra is largely unknown. Here, we report the identification of Hyzic, a homolog of the Zn-finger transcription factor gene zic/odd-paired, which acts as an early neural effector gene in vertebrates. We show, that Hyzic is expressed in the early nematocyte differentiation pathway, starting at the level of interstitial stem cells. Expression of Hyzic is restricted to the proliferative stages of nematoblasts. Hyzic acts before and possibly directly upstream of Cnash, a homolog of the proneural bHLH transcription factor gene achaete-scute, and of Nowa, an early nematocyte differentiation marker gene. Hyzic may determine stem cells to differentiate into nematocytes. Our data are consistent with a role of Hyzic in inhibiting nematocyte differentiation, by keeping committed nematoblast cells in the cell cycle. A similar role has been demonstrated for Zic genes in vertebrates. Our results suggest, that genetic cascades of neural development may be conserved from Hydra to vertebrates, indicating that the molecular regulation of neural development evolved only once.
刺胞动物是动物进化过程中首个拥有神经系统的生物类群。刺胞动物水螅有两种神经元细胞,即神经细胞和刺细胞。这两种细胞均由同一群多能干细胞分化而来。然而,水螅神经分化的分子调控机制在很大程度上仍不清楚。在此,我们报告了Hyzic的鉴定结果,它是锌指转录因子基因zic/odd-paired的同源物,在脊椎动物中作为早期神经效应基因发挥作用。我们发现,Hyzic在早期刺细胞分化途径中表达,起始于间充质干细胞水平。Hyzic的表达局限于刺细胞母细胞的增殖阶段。Hyzic在Cnash(神经前体bHLH转录因子基因achaete-scute的同源物)和Nowa(一种早期刺细胞分化标记基因)之前发挥作用,并且可能直接位于它们的上游。Hyzic可能决定干细胞分化为刺细胞。我们的数据与Hyzic通过使已分化的刺细胞母细胞停留在细胞周期中来抑制刺细胞分化的作用相一致。脊椎动物中的Zic基因也有类似作用。我们的结果表明,从水螅到脊椎动物,神经发育的遗传级联可能是保守的,这表明神经发育的分子调控仅进化了一次。