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融合抑制因子对于维持视网膜神经祖细胞的多能性是必需的。

Suppressor of fused is required to maintain the multipotency of neural progenitor cells in the retina.

机构信息

Vision Program, Ottawa Hospital Research Institute, Ottawa, Ontario K1H 8L6, Canada.

出版信息

J Neurosci. 2011 Mar 30;31(13):5169-80. doi: 10.1523/JNEUROSCI.5495-10.2011.

Abstract

The morphogen sonic hedgehog (Shh) plays a crucial role in development of the CNS, including the neural retina. Suppressor of fused (Sufu) has been recently identified as a critical regulator of Hh signaling in mammals. However, the precise roles that Sufu plays in the regulation of proliferation and cell-fate decisions in neural progenitors is unknown. Here, we have addressed these questions by conditionally deleting Sufu in mouse multipotent retinal progenitor cells (RPCs). Sufu deletion in RPCs results in transient increases in Hh activity and proliferation followed by developmentally premature cell-cycle exit. Importantly, we demonstrate a novel role for Sufu in the maintenance of multipotency in RPCs. Sufu-null RPCs downregulate transcription factors required to specify or maintain RPC identity (Rax, Vsx2) and multipotency (Pax6) but continue to express the neural progenitor marker Sox2. These cells fail to express retinal lineage-specific transcription factors, such as Math5, and adopt an amacrine or horizontal cell fate at the expense of all other classes of retinal neurons. Genetic elimination of Gli2 in Sufu-null RPCs attenuates Hh pathway activity and restores multipotency in neural progenitors. These data provide novel evidence that Sufu-mediated antagonism of Hh/Gli2 signaling is required to maintain RPC multipotency and identity.

摘要

形态发生素 sonic hedgehog(Shh)在中枢神经系统(CNS)的发育中起着至关重要的作用,包括神经视网膜。融合抑制因子(Sufu)最近被确定为哺乳动物中 Hh 信号转导的关键调节因子。然而,Sufu 在神经祖细胞的增殖和细胞命运决定中的精确作用尚不清楚。在这里,我们通过条件性删除小鼠多能视网膜祖细胞(RPCs)中的 Sufu 来解决这些问题。Sufu 在 RPC 中的缺失导致 Hh 活性和增殖的短暂增加,随后是发育性过早的细胞周期退出。重要的是,我们证明了 Sufu 在维持 RPC 多能性中的新作用。Sufu 缺失的 RPC 下调指定或维持 RPC 身份(Rax、Vsx2)和多能性(Pax6)所需的转录因子,但继续表达神经祖细胞标记物 Sox2。这些细胞无法表达视网膜谱系特异性转录因子,例如 Math5,并采用无长突细胞或水平细胞命运,而牺牲了所有其他类型的视网膜神经元。Sufu 缺失的 RPC 中 Gli2 的遗传消除可减弱 Hh 途径活性并恢复神经祖细胞的多能性。这些数据提供了新的证据,表明 Sufu 介导的 Hh/Gli2 信号转导拮抗作用对于维持 RPC 多能性和身份是必需的。

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