Kurusu Mitsuhiko, Maruyama Yasushi, Adachi Yoshitsugu, Okabe Masataka, Suzuki Emiko, Furukubo-Tokunaga Katsuo
Structural Biology Center, National Institute of Genetics, and Department of Genetics, The Graduate University for Advanced Studies, 1111 Yata, Mishima, Shizuoka 411-8540, Japan.
Dev Biol. 2009 Feb 1;326(1):224-36. doi: 10.1016/j.ydbio.2008.11.013. Epub 2008 Nov 30.
The intrinsic neurons of mushroom bodies (MBs), centers of olfactory learning in the Drosophila brain, are generated by a specific set of neuroblasts (Nbs) that are born in the embryonic stage and exhibit uninterrupted proliferation till the end of the pupal stage. Whereas MB provides a unique model to study proliferation of neural progenitors, the underlying mechanism that controls persistent activity of MB-Nbs is poorly understood. Here we show that Tailless (TLL), a conserved orphan nuclear receptor, is required for optimum proliferation activity and prolonged maintenance of MB-Nbs and ganglion mother cells (GMCs). Mutations of tll progressively impair cell cycle in MB-Nbs and cause premature loss of MB-Nbs in the early pupal stage. TLL is also expressed in MB-GMCs to prevent apoptosis and promote cell cycling. In addition, we show that ectopic expression of tll leads to brain tumors, in which Prospero, a key regulator of progenitor proliferation and differentiation, is suppressed whereas localization of molecular components involved in asymmetric Nb division is unaffected. These results as a whole uncover a distinct regulatory mechanism of self-renewal and differentiation of the MB progenitors that is different from the mechanisms found in other progenitors.
蕈形体(MBs)是果蝇大脑中嗅觉学习的中心,其内在神经元由一组特定的神经母细胞(Nbs)产生,这些神经母细胞在胚胎期产生,并在蛹期结束前持续增殖。虽然MB为研究神经祖细胞的增殖提供了一个独特的模型,但控制MB-Nbs持续活动的潜在机制却知之甚少。在这里,我们表明无尾(TLL),一种保守的孤儿核受体,是MB-Nbs和神经节母细胞(GMCs)最佳增殖活性和长期维持所必需的。tll突变会逐渐损害MB-Nbs中的细胞周期,并导致蛹早期MB-Nbs过早丢失。TLL也在MB-GMCs中表达,以防止细胞凋亡并促进细胞周期进程。此外,我们表明tll的异位表达会导致脑肿瘤,其中祖细胞增殖和分化的关键调节因子Prospero被抑制,而参与不对称Nb分裂的分子成分的定位不受影响。这些结果整体揭示了MB祖细胞自我更新和分化的一种独特调控机制,该机制不同于在其他祖细胞中发现的机制。