School of Natural Sciences and Regenerative Medicine Institute (REMEDI), National University of Ireland, Galway, Ireland.
J Cell Sci. 2013 Jul 15;126(Pt 14):3192-203. doi: 10.1242/jcs.127233. Epub 2013 May 9.
Nanos is a pan-metazoan germline marker, important for germ cell development and maintenance. In flies, Nanos also acts in posterior and neural development, but these functions have not been demonstrated experimentally in other animals. Using the cnidarian Hydractinia we have uncovered novel roles for Nanos in neural cell fate determination. Ectopic expression of Nanos2 increased the numbers of embryonic stinging cell progenitors, but decreased the numbers of neurons. Downregulation of Nanos2 had the opposite effect. Furthermore, Nanos2 blocked maturation of committed, post-mitotic nematoblasts. Hence, Nanos2 acts as a switch between two differentiation pathways, increasing the numbers of nematoblasts at the expense of neuroblasts, but preventing nematocyte maturation. Nanos2 ectopic expression also caused patterning defects, but these were not associated with deregulation of Wnt signaling, showing that the basic anterior-posterior polarity remained intact, and suggesting that numerical imbalance between nematocytes and neurons might have caused these defects, affecting axial patterning only indirectly. We propose that the functions of Nanos in germ cells and in neural development are evolutionarily conserved, but its role in posterior patterning is an insect or arthropod innovation.
Nanos 是一种泛后生动物生殖系标记物,对生殖细胞的发育和维持很重要。在果蝇中,Nanos 还在后部和神经发育中起作用,但这些功能在其他动物中尚未通过实验证明。利用刺胞动物海葵,我们揭示了 Nanos 在神经细胞命运决定中的新作用。Nanos2 的异位表达增加了胚胎刺细胞祖细胞的数量,但减少了神经元的数量。Nanos2 的下调则产生相反的效果。此外,Nanos2 阻止了已定型、有丝分裂后神经母细胞的成熟。因此,Nanos2 作为两种分化途径之间的开关,增加了神经母细胞的数量,牺牲了神经细胞,但阻止了刺细胞的成熟。Nanos2 的异位表达也导致了模式缺陷,但这些缺陷与 Wnt 信号的失调无关,表明基本的前后极性保持完整,并表明刺细胞和神经元之间数量失衡可能导致了这些缺陷,仅间接地影响了轴向模式。我们提出,Nanos 在生殖细胞和神经发育中的功能在进化上是保守的,但它在后部模式形成中的作用是昆虫或节肢动物的创新。