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FGF1 patterns the optic vesicle by directing the placement of the neural retina domain.

机译:FGF1通过指导神经视网膜结构域的放置来图案化视神经小泡。

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摘要

Patterning of the bipotential retinal primordia (the optic vesicles) into neural retina and retinal pigmented epithelium depends on its interaction with overlaying surface ectoderm. The surface ectoderm expresses FGFs and the optic vesicles express FGF receptors. Previous FGF-expression data and in vitro analyses support the hypothesis that FGF signaling plays a significant role in patterning the optic vesicle. To test this hypothesis in vivo we removed surface ectoderm, a rich source of FGFs. This ablation generated retinas in which neural and pigmented cell phenotypes were co-mingled. Two in vivo protocols were used to replace FGF secretion by surface ectoderm: (1) implantation of FGF-secreting fibroblasts, and (2) injection of replication-incompetent FGF retroviral expression vectors. The retinas in such embryos exhibited segregated neural and pigmented epithelial domains. The neural retina domains were always close to a source of FGF secretion. These results indicate that, in the absense of surface ectoderm, cells of the optic vesicles display both neural and pigmented retinal phenotypes, and that positional cues provided by FGF organize the bipotential optic vesicle into specific neural retina and pigmented epithelium domains. We conclude that FGF can mimic one of the earliest functions of surface ectoderm during eye development, namely the demarcation of neural retina from pigmented epithelium.
机译:双能视网膜原基(视神经小泡)进入神经视网膜和视网膜色素上皮的模式取决于其与表面外胚层的相互作用。表面外胚层表达FGF,而视泡囊表达FGF受体。以前的FGF表达数据和体外分析均支持FGF信号在构图视泡中起重要作用的假说。为了在体内验证该假设,我们去除了表面外胚层,这是FGF的丰富来源。这种消融产生了视网膜,其中神经细胞和色素细胞表型混合在一起。两种体内实验方案用于通过表面外胚层代替FGF分泌:(1)植入分泌FGF的成纤维细胞,和(2)注射无复制能力的FGF逆转录病毒表达载体。这种胚胎中的视网膜表现出分离的神经和色素上皮结构域。神经视网膜结构域总是靠近FGF分泌源。这些结果表明,在缺乏表面外胚层的情况下,视神经小泡的细胞既显示了视网膜的神经表型,也显示了有色的视网膜表型,并且FGF提供的位置提示将双能性视小泡组织为特定的神经视网膜和有色的上皮域。我们得出的结论是,FGF可以模仿眼睛发育过程中表面外胚层的最早功能之一,即从有色上皮标定神经视网膜。

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