Backman Mattias, Machon Ondrej, Mygland Line, van den Bout Christiaan Johannes, Zhong Weimin, Taketo Makoto M, Krauss Stefan
Institute of Medical Microbiology and Centre for Molecular Biology and Neuroscience, University of Oslo, The National Hospital, 0027 Oslo, Norway.
Dev Biol. 2005 Mar 1;279(1):155-68. doi: 10.1016/j.ydbio.2004.12.010.
Wnt signaling is involved in numerous processes during vertebrate CNS development. In this study, we used conditional Cre/loxP system in mouse to ablate or activate beta-catenin in the telencephalon in two time windows: before and after the onset of neurogenesis. We show that beta-catenin mediated Wnt signals are required to maintain the molecular identity of the pallium. Inactivation of beta-catenin in the telencephalon before neurogenesis results in downregulated expression of dorsal markers Emx1, Emx2 and Ngn2, and in ectopic up-regulation of ventral markers Gsh2, Mash1 and Dlx2 in the pallium. In contrast, ablation of ss-catenin after the onset of cortical neurogenesis (E11.5) does not result in a dorso-ventral fate shift. In addition, activation of canonical Wnt signaling in the subpallium leads to a repression of ventral telencephalic cell identities as shown by the down-regulation of subpallial markers Dlx2, Nkx2.1, Gsh2, Olig2 and Mash1. This was accompanied with an expansion of dorsal identities ventrally as shown by the expanded expression domains of pallial markers Pax6 and Ngn2. Thus, our data suggest that canonical Wnt signals are involved in maintaining the identity of the pallium by controlling expression of dorsal markers and by suppressing ventral programs from being activated in pallial progenitor cells.
Wnt信号通路参与脊椎动物中枢神经系统发育过程中的众多进程。在本研究中,我们利用小鼠的条件性Cre/loxP系统,在两个时间窗口——神经发生开始之前和之后,在端脑中消融或激活β-连环蛋白。我们发现,β-连环蛋白介导的Wnt信号对于维持大脑皮层的分子特性是必需的。在神经发生之前端脑中β-连环蛋白的失活导致背侧标志物Emx1、Emx2和Ngn2的表达下调,以及大脑皮层中腹侧标志物Gsh2、Mash1和Dlx2的异位上调。相反,在皮层神经发生开始后(E11.5)消融β-连环蛋白并不会导致背腹命运转变。此外,如通过下调皮质下标志物Dlx2、Nkx2.1、Gsh2、Olig2和Mash1所示,在皮层下激活经典Wnt信号会导致腹侧端脑细胞特性受到抑制。这伴随着背侧特性向腹侧扩展,如大脑皮层标志物Pax6和Ngn2的表达域扩大所示。因此,我们的数据表明,经典Wnt信号通过控制背侧标志物的表达以及抑制腹侧程序在大脑皮层祖细胞中的激活,参与维持大脑皮层的特性。