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Efficient retina formation requires suppression of both Activin and BMP signaling pathways in pluripotent cells

机译:高效的视网膜形成需要抑制多能细胞中的激活素和BMP信号通路

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摘要

Retina formation requires the correct spatiotemporal patterning of key regulatory factors. While it is known that repression of several signaling pathways lead to specification of retinal fates, addition of only Noggin, a known BMP antagonist, can convert pluripotent Xenopus laevis animal cap cells to functional retinal cells. The aim of this study is to determine the intracellular molecular events that occur during this conversion. Surprisingly, blocking BMP signaling alone failed to mimic Noggin treatment. Overexpressing Noggin in pluripotent cells resulted in a concentration-dependent suppression of both Smad1 and Smad2 phosphorylation, which act downstream of BMP and Activin signaling, respectively. This caused a decrease in downstream targets: endothelial marker, xk81, and mesodermal marker, xbra. We treated pluripotent cells with dominant-negative receptors or the chemical inhibitors, dorsomorphin and SB431542, which each target either the BMP or Activin signaling pathway. We determined the effect of these treatments on retina formation using the Animal Cap Transplant (ACT) assay; in which treated pluripotent cells were transplanted into the eye field of host embryos. We found that inhibition of Activin signaling, in the presence of BMP signaling inhibition, promotes efficient retinal specification in Xenopus tissue, mimicking the affect of adding Noggin alone. In whole embryos, we found that the eye field marker, rax, expanded when adding both dominant-negative Smad1 and Smad2, as did treating the cells with both dorsomorphin and SB431542. Future studies could translate these findings to a mammalian culture assay, in order to more efficiently produce retinal cells in culture.
机译:视网膜形成需要关键调控因子的正确时空模式。虽然已知抑制几种信号通路会导致视网膜命运的确定,但仅添加已知的BMP拮抗剂Noggin可以将多能非洲爪蟾动物帽细胞转化为功能性视网膜细胞。这项研究的目的是确定这种转化过程中发生的细胞内分子事件。令人惊讶的是,仅阻断BMP信号传导不能模仿Noggin治疗。多能细胞中过表达的Noggin导致Smad1和Smad2磷酸化的浓度依赖性抑制,这分别作用于BMP和Activin信号传导的下游。这导致下游靶标减少:内皮标记物xk81和中胚层标记物xbra。我们用显性阴性受体或化学抑制剂dorsomorphin和SB431542处理多能细胞,它们各自靶向BMP或Activin信号通路。我们使用动物帽移植(ACT)测定法确定了这些治疗对视网膜形成的影响。将经过处理的多能细胞移植到宿主胚胎的眼场中。我们发现,在存在BMP信号抑制作用的情况下,激活素信号传导的抑制作用会促进爪蟾组织中有效的视网膜规格,从而模仿单独添加Noggin的影响。在整个胚胎中,我们发现当同时添加显性负性Smad1和Smad2时,视场标记rax会扩大,就像用dorsomorphin和SB431542处理细胞一样。未来的研究可能会将这些发现转化为哺乳动物培养测定法,以便更有效地产生培养物中的视网膜细胞。

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