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通过时间适应机制对音猬因子形态发生素梯度的解读。

Interpretation of the sonic hedgehog morphogen gradient by a temporal adaptation mechanism.

作者信息

Dessaud Eric, Yang Lin Lin, Hill Katy, Cox Barny, Ulloa Fausto, Ribeiro Ana, Mynett Anita, Novitch Bennett G, Briscoe James

机构信息

Developmental Neurobiology, National Institute for Medical Research Mill Hill, London NW7 1AA, UK.

出版信息

Nature. 2007 Nov 29;450(7170):717-20. doi: 10.1038/nature06347.

Abstract

Morphogens act in developing tissues to control the spatial arrangement of cellular differentiation. The activity of a morphogen has generally been viewed as a concentration-dependent response to a diffusible signal, but the duration of morphogen signalling can also affect cellular responses. One such example is the morphogen sonic hedgehog (SHH). In the vertebrate central nervous system and limbs, the pattern of cellular differentiation is controlled by both the amount and the time of SHH exposure. How these two parameters are interpreted at a cellular level has been unclear. Here we provide evidence that changing the concentration or duration of SHH has an equivalent effect on intracellular signalling. Chick neural cells convert different concentrations of SHH into time-limited periods of signal transduction, such that signal duration is proportional to SHH concentration. This depends on the gradual desensitization of cells to ongoing SHH exposure, mediated by the SHH-dependent upregulation of patched 1 (PTC1), a ligand-binding inhibitor of SHH signalling. Thus, in addition to its role in shaping the SHH gradient, PTC1 participates cell autonomously in gradient sensing. Together, the data reveal a novel strategy for morphogen interpretation, in which the temporal adaptation of cells to a morphogen integrates the concentration and duration of a signal to control differential gene expression.

摘要

形态发生素在发育中的组织中发挥作用,以控制细胞分化的空间排列。形态发生素的活性通常被视为对可扩散信号的浓度依赖性反应,但形态发生素信号传导的持续时间也会影响细胞反应。一个这样的例子是形态发生素音猬因子(SHH)。在脊椎动物的中枢神经系统和四肢中,细胞分化模式受SHH暴露量和时间的控制。这两个参数在细胞水平上是如何被解读的尚不清楚。在这里,我们提供证据表明,改变SHH的浓度或持续时间对细胞内信号传导有同等作用。鸡神经细胞将不同浓度的SHH转化为有限时间的信号转导期,使得信号持续时间与SHH浓度成正比。这取决于细胞对持续SHH暴露的逐渐脱敏,这是由SHH信号传导的配体结合抑制剂patched 1(PTC1)的SHH依赖性上调介导的。因此,除了其在塑造SHH梯度中的作用外,PTC1还自主参与梯度感知。总之,这些数据揭示了一种形态发生素解读的新策略,其中细胞对形态发生素的时间适应性整合了信号的浓度和持续时间,以控制差异基因表达。

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