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Notch signaling induces retinal stem-like properties in perinatal neural retina progenitors and promotes symmetric divisions in adult retinal stem cells

机译:Notch信号转导诱导围产期神经视网膜祖细胞的视网膜干细胞样特性,并促进成体视网膜干细胞的对称分裂

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Understanding the mechanisms regulating retinal stem cell (RSC) activity is fundamental for future stem cell-based therapeutic purposes. By combining gain and loss of function approaches, we addressed whether Notch signaling may play a selective role in retinal stem versus retinal progenitor cells in both developing and adult eyes. Inhibition of either Notch or fibroblast growth factor signaling reduced proliferation of retinal stem and retinal progenitor cells, and inhibited RSC self-renewal. Conversely, exogenous Delta-like 3 and direct intrinsic Notch activation stimulated expansionary symmetric divisions in adult RSCs with the concomitant upregulation of Hes5. Knocking down Hes5 expression specifically decreased the numbers, but not the diameters, of adult RSC primary spheres, indicating that HES5 is the downstream effector of Notch receptor in controlling adult RSC proliferation. In addition, constitutive Notch activation induced retinal stem-like asymmetric self-renewal properties, with no expansion (no symmetrical division) in perinatal neural retina progenitor cells. These findings highlight central roles of Notch signaling activity in regulating the modes of division of retinal stem and retinal progenitor cells.
机译:了解调节视网膜干细胞(RSC)活性的机制对于未来基于干细胞的治疗目的至关重要。通过结合功能获得和丧失方法,我们解决了Notch信号转导是否可能在发育中和成人眼睛的视网膜干细胞与视网膜祖细胞中发挥选择性作用。抑制Notch或成纤维细胞生长因子信号转导可减少视网膜干细胞和视网膜祖细胞的增殖,并抑制RSC的自我更新。相反,外源性 Delta 样 3 和直接内在 Notch 激活刺激成年 RSC 的扩张对称分裂,同时上调 Hes5。敲低 Hes5 表达特异性地减少了成虫 RSC 原代球的数量,但不减小直径,表明 HES5 是控制成体 RSC 增殖的 Notch 受体的下游效应子。此外,组成型Notch激活诱导视网膜干样不对称自我更新特性,围产期神经视网膜祖细胞无扩增(无对称分裂)。这些发现强调了Notch信号活性在调节视网膜干细胞和视网膜祖细胞分裂模式中的核心作用。

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