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Hedgehog regulates Norrie disease protein to drive neural progenitor self-renewal

机译:刺猬调节诺里氏病蛋白以驱动神经祖细胞自我更新

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Norrie disease (ND) is a congenital disorder characterized by retinal hypovascularization and cognitive delay. ND has been linked to mutations in 'Norrie Disease Protein' (Ndp), which encodes the secreted protein Norrin. Norrin functions as a secreted angiogenic factor, although its role in neural development has not been assessed. Here, we show that Ndp expression is initiated in retinal progenitors in response to Hedgehog (Hh) signaling, which induces Gli2 binding to the Ndp promoter. Using a combination of genetic epistasis and acute RNAi-knockdown approaches, we show that Ndp is required downstream of Hh activation to induce retinal progenitor proliferation in the retina. Strikingly, Ndp regulates the rate of cell-cycle re-entry and not cell-cycle kinetics, thereby uncoupling the self-renewal and cell-cycle progression functions of Hh. Taken together, we have uncovered a cell autonomous function for Ndp in retinal progenitor proliferation that is independent of its function in the retinal vasculature, which could explain the neural defects associated with ND. ? The Author 2012. Published by Oxford University Press. All rights reserved.
机译:诺里氏病(ND)是一种先天性疾病,其特征是视网膜血运不足和认知迟缓。 ND与“诺里氏病蛋白”(Ndp)的突变有关,后者编码分泌的蛋白Norrin。诺林蛋白起着分泌性血管生成因子的作用,尽管尚未评估其在神经发育中的作用。在这里,我们显示Ndp表达在视网膜祖细胞中启动,以响应刺猬(Hh)信号传导,从而诱导Gli2与Ndp启动子结合。使用遗传上位和急性RNAi击倒方法的组合,我们表明Ndp是Hh激活的下游所需的,以诱导视网膜祖细胞在视网膜中增殖。令人惊讶的是,Ndp调节细胞周期再进入的速率,而不是细胞周期动力学,从而使Hh的自我更新和细胞周期进程功能脱钩。综上所述,我们发现了Ndp在视网膜祖细胞增殖中的细胞自主功能,独立于其在视网膜血管系统中的功能,这可以解释与ND相关的神经缺陷。 ?作者2012。牛津大学出版社出版。版权所有。

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