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Ventral neural patterning in the absence of a Shh activity gradient from the floorplate

机译:腹侧神经图案在没有SHH活动梯度的底板上

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Background: Vertebrate spinal cord development requires Sonic Hedgehog (Shh) signaling from the floorplate and notochord, where it is thought to act in concentration dependent manner to pattern distinct cell identities along the ventral‐to‐dorsal axis. While in vitro experiments demonstrate na?ve neural tissues are sensitive to small changes in Shh levels, genetic studies illustrate that some degree of ventral patterning can occur despite significant perturbations in Shh signaling. Consequently, the mechanistic relationship between Shh morphogen levels and acquisition of distinct cell identities remains unclear. Results: We addressed this using Hedgehog acetyltransferase ( Hhat Creface ) and Wiggable mouse mutants. Hhat encodes a palmitoylase required for the secretion of Hedgehog proteins and formation of the Shh gradient. In its absence, the spinal cord develops without floorplate cells and V3 interneurons. Wiggable is an allele of the Shh receptor Patched1 (Ptch1 Wig ) that is unable to inhibit Shh signal transduction, resulting in expanded ventral progenitor domains. Surprisingly, Hhat Creface/Creface ; Ptch1 Wig/Wig double mutants displayed fully restored ventral patterning despite an absence of Shh secretion from the floorplate. Conclusions: The full range of neuronal progenitor types can be generated in the absence of a Shh gradient provided pathway repression is dampened, illustrating the complexity of morphogen dynamics in vertebrate patterning. Developmental Dynamics 247:170–184, 2018 . ? 2017 Wiley Periodicals, Inc.
机译:背景:脊椎动物脊髓开发需要从底板和脊索的信号传导的声音刺猬(SHH)信号传递,在那里认为沿着腹侧轴沿浓度依赖性方式采用浓度依赖性方式。虽然在体外实验证明Na've神经组织对SHH水平的小变化敏感,但遗传学研究表明,尽管SHH信号传导显着扰动,但仍然可能发生一定程度的腹侧图案。因此,SHH形态学水平与明显细胞身份的获取的机械关系仍不清楚。结果:我们使用刺猬乙酰转移酶(HHAT冰川)和可衰减的小鼠突变体来解决这一点。 HHAT编码了刺猬蛋白分泌和形成SHH梯度所需的棕榈酰酶。在缺席的情况下,脊髓没有地底板细胞和v3型细胞。可唤醒是不能抑制SHH信号转导的SHH受体浸渍的1(PTCH1 WIG)的等位基因,导致腹侧祖域膨胀域。令人惊讶的是,HHAT射灯/射灯; PTCH1假发/假发双突变体显示出完全恢复的腹侧图案,尽管壁板没有SHH分泌物。结论:在没有SHH梯度的情况下,可以在没有SHH梯度的情况下产生全系列的神经元祖细胞类型的抑制,说明了脊椎动物图案中的形态学动力学的复杂性。发展动力学247:170-184,2018。还2017年Wiley期刊,Inc。

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