Institute of Physiological Chemistry, Ulm University, Albert Einstein Allee 11, 89081 Ulm, Germany.
FASEB J. 2012 Dec;26(12):4990-5001. doi: 10.1096/fj.12-208587. Epub 2012 Aug 30.
Inactivation of FoxO proteins by phosphorylation is the result of a number of stimuli, including the insulin/IGF pathway. We were interested in the consequence of blunting this pathway by employing transgenic mice with tetracycline-controllable conditional expression of a constitutively active allele of FOXO3 under the control of the forebrain-specific CaMKIIα promoter. Although transgene-expressing mice were viable, brain weight was reduced by 30% in adult animals. Brains showed an isocortex compression with normal cortical layering, and a size reduction in regions known to depend on adult neurogenesis, i.e., the olfactory bulbs and the dentate gyrus. On postnatal activation of the transgene, adult neurogenesis was also severely affected. Investigating the molecular basis of this phenotype, we observed enhanced apoptosis starting from embryonic day E10.5 and a subsequent loss of progenitors in the ventricular/subventricular zones, but not in the isocortex or the striatum of adult mice. The enhanced apoptosis was accompanied by increased expression of PIK3IP1, which we identified as a direct transcriptional target of FOXO3. Transfection of Pik3ip1 into differentiating neural progenitors resulted in a significant reduction of viable cells. We therefore conclude that neural progenitors are particularly vulnerable to FOXO3-induced apoptosis, which is mediated by PIK3IP1, a negative PI3 kinase regulator.
FoxO 蛋白的磷酸化失活是许多刺激因素的结果,包括胰岛素/IGF 通路。我们对通过使用 tetracycline 控制的条件表达在大脑特异性 CaMKIIα 启动子控制下的 FOXO3 的组成性激活等位基因的转基因小鼠来削弱这条通路的后果感兴趣。尽管转基因表达的小鼠是存活的,但成年动物的大脑重量减轻了 30%。大脑表现出同型皮质压缩,具有正常的皮质分层,并且在已知依赖于成年神经发生的区域(即嗅球和齿状回)中体积减小。在转基因的产后激活后,成年神经发生也受到严重影响。研究这种表型的分子基础时,我们观察到从胚胎第 10.5 天开始的凋亡增加,随后在脑室/室下区的祖细胞丢失,但在成年小鼠的同型皮质或纹状体中没有丢失。增强的凋亡伴随着 PIK3IP1 的表达增加,我们将其鉴定为 FOXO3 的直接转录靶标。将 Pik3ip1 转染到分化的神经祖细胞中会导致存活细胞数量显著减少。因此,我们得出结论,神经祖细胞特别容易受到 FOXO3 诱导的凋亡的影响,这种凋亡是由 PIK3IP1 介导的,PI3 激酶的负调节剂。