Department of Cell Biology, Neurobiology and Anatomy, Medical College of Wisconsin, Milwaukee, WI 53226, USA.
Development. 2012 May;139(9):1599-610. doi: 10.1242/dev.078097.
To gain insights into the cellular mechanisms of neurogenesis, we analyzed retinal neuroepithelia deficient for Llgl1, a protein implicated in apicobasal cell polarity, asymmetric cell division, cell shape and cell cycle exit. We found that vertebrate retinal neuroepithelia deficient for Llgl1 retained overt apicobasal polarity, but had expanded apical domains. Llgl1 retinal progenitors also had increased Notch activity and reduced rates of neurogenesis. Blocking Notch function by depleting Rbpj restored normal neurogenesis. Experimental expansion of the apical domain, through inhibition of Shroom3, also increased Notch activity and reduced neurogenesis. Significantly, in wild-type retina, neurogenic retinal progenitors had smaller apical domains compared with proliferative neuroepithelia. As nuclear position during interkinetic nuclear migration (IKNM) has been previously linked with cell cycle exit, we analyzed this phenomenon in cells depleted of Llgl1. We found that although IKNM was normal, the relationship between nuclear position and neurogenesis was shifted away from the apical surface, consistent with increased pro-proliferative and/or anti-neurogenic signals associated with the apical domain. These data, in conjunction with other findings, suggest that, in retinal neuroepithelia, the size of the apical domain modulates the strength of polarized signals that influence neurogenesis.
为了深入了解神经发生的细胞机制,我们分析了 Llgl1 缺失的视网膜神经上皮,Llgl1 是一种参与顶底细胞极性、不对称细胞分裂、细胞形状和细胞周期退出的蛋白质。我们发现,脊椎动物视网膜神经上皮中 Llgl1 的缺失保留了明显的顶底极性,但顶端区域扩大了。Llgl1 视网膜祖细胞的 Notch 活性也增加,神经发生的速度降低。通过消耗 Rbpj 阻断 Notch 功能可恢复正常的神经发生。通过抑制 Shroom3 扩大顶端区域的实验,也增加了 Notch 活性并减少了神经发生。重要的是,在野生型视网膜中,与增殖性神经上皮相比,神经发生的视网膜祖细胞具有较小的顶端区域。由于有丝分裂核迁移 (IKNM) 期间的核位置先前与细胞周期退出有关,因此我们分析了 Llgl1 缺失细胞中的这种现象。我们发现,尽管 IKNM 正常,但核位置与神经发生之间的关系从顶端表面转移,这与与顶端区域相关的增加的促增殖和/或抗神经发生信号一致。这些数据与其他发现一起表明,在视网膜神经上皮中,顶端区域的大小调节影响神经发生的极化信号的强度。