Petersen Petur H, Zou Kaiyong, Krauss Stefan, Zhong Weimin
Department of Molecular, Cellular and Developmental Biology, Yale University, P.O. Box 208103, New Haven, Connecticut 06520, USA.
Nat Neurosci. 2004 Aug;7(8):803-11. doi: 10.1038/nn1289. Epub 2004 Jul 25.
Neural progenitor cells in the developing neocortex change over time to produce different neurons, a phenomenon that is also observed in other regions of the nervous system. Mouse Numb (also known as m-numb) and Numbl (also known as numblike or Nbl) are redundant but essential in maintaining virtually all progenitor cells during early neurogenesis. They do this by allowing cells to choose progenitor over neuronal fates. To determine whether their roles change as neurogenesis progresses, we conditionally ablated both genes in the embryonic dorsal forebrain after initial waves of neurogenesis. Here we report that these proteins continue to be required for progenitor-cell maintenance, contrary to recently reported findings. As occurs during early neurogenesis, the loss of Numb and Numbl causes premature progenitor-cell depletion and, consequently, a highly specific malformation of the neocortex and hippocampus. Because progenitor cells can proliferate without Numb and Numbl before neurogenesis, we propose that Numb-mediated asymmetric cell divisions, which diversify many cell fates in Drosophila melanogaster, represent a general mechanism in mammals for stem cells to balance self-renewal and differentiation.
发育中的新皮质中的神经祖细胞会随着时间推移发生变化,以产生不同的神经元,这种现象在神经系统的其他区域也能观察到。小鼠Numb(也称为m-numb)和Numbl(也称为numblike或Nbl)功能冗余,但在早期神经发生过程中维持几乎所有祖细胞方面至关重要。它们通过让细胞选择祖细胞命运而非神经元命运来实现这一点。为了确定随着神经发生的进展它们的作用是否会发生变化,我们在神经发生的初始浪潮之后,有条件地敲除了胚胎背侧前脑的这两个基因。在此我们报告,与最近报道的结果相反,这些蛋白质对于祖细胞的维持仍然是必需的。正如在早期神经发生过程中所发生的那样,Numb和Numbl的缺失会导致祖细胞过早耗竭,进而导致新皮质和海马体出现高度特异性的畸形。由于祖细胞在神经发生之前可以在没有Numb和Numbl的情况下增殖,我们提出,在果蝇中使许多细胞命运多样化的Numb介导的不对称细胞分裂,代表了哺乳动物中干细胞平衡自我更新和分化的一种普遍机制。