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首页> 外文期刊>BMC Developmental Biology >Balanced Shh signaling is required for proper formation and maintenance of dorsal telencephalic midline structures
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Balanced Shh signaling is required for proper formation and maintenance of dorsal telencephalic midline structures

机译:平衡的Shh信号是正确形成和维持背侧脑中线结构所必需的

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Background The rostral telencephalic dorsal midline is an organizing center critical for the formation of the future cortex and hippocampus. While the intersection of WNTs, BMPs, and FGFs establishes boundaries within this critical center, a direct role of Shh signaling in this region remains controversial. In this paper we show that both increased and decreased Shh signaling directly affects boundary formation within the telencephalic dorsal midline. Results Viral over-expression of Shh in the embryonic telencephalon prevents formation of the cortical hem and choroid plexus, while expanding the roof plate. In a transgenic model where cholesterol-lacking ShhN is expressed from one allele (ShhN/+), genes expressed in all three domains, cortical hem, choroid plexus and roof plate expand. In Gli1/2 -/- mutant brains, where Shh signaling is reduced, the roof plate expands, again at the expense of cortical hem and plexus. Cell autonomous activation of Shh signaling in the dorsal midline through Gdf7-driven activated Smoothened expression results in expansion of the Wnt3a-expressing cortical hem into the plexus domain. In addition, developmental stage determines dorsal midline responsiveness to Shh. Conclusions Together, these data demonstrate that balanced Shh signaling is critical for maintaining regional boundaries within the dorsal midline telencephalic organizing center.
机译:背景鼻端神经末梢中线是一个组织中心,对未来皮质和海马的形成至关重要。虽然WNT,BMP和FGF的交集在此关键中心内建立了边界,但Shh信号在该区域的直接作用仍存在争议。在本文中,我们表明,Shh信号的增加和减少均直接影响端脑背中线的边界形成。结果胚胎末梢脑中Shh的病毒过度表达阻止了皮质下摆和脉络丛的形成,同时扩大了顶板。在从一个等位基因(ShhN / +)表达缺乏胆固醇的ShhN的转基因模型中,在所有三个域(皮质下摆,脉络丛和屋顶板)中表达的基因均会扩增。在Sh1信号减少的Gli1 / 2-/-突变型大脑中,顶板膨胀,再次以皮质下摆和丛为代价。通过Gdf7驱动的激活的平滑化表达在背中线中Shh信号的细胞自主激活导致表达Wnt3a的皮质下摆扩展到丛域。此外,发育阶段决定对Shh的背中线反应。结论总之,这些数据表明,平衡的Shh信号对于维持背侧中线端脑组织中心内的区域边界至关重要。

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