Exacerbated sonic hedgehog signalling promotes a transition from chemical pre-patterning of chicken reticulate scales to mechanical skin folding.

IF 4.5 3区 生物学 Q1 BIOCHEMISTRY & MOLECULAR BIOLOGY
Open Biology Pub Date : 2025-04-01 Epub Date: 2025-04-16 DOI:10.1098/rsob.240342
Rory L Cooper, Ebrahim Jahanbakhsh, Gabriel N Santos Durán, Michel C Milinkovitch
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引用次数: 0

Abstract

Many examples of self-organized embryonic patterning can be attributed to chemically mediated systems comprising interacting morphogens. However, mechanical patterning also contributes to the emergence of biological forms. For example, various studies have demonstrated that diverse patterns arise from elastic instabilities associated with the constrained growth of soft materials, which generate wrinkles, creases and folds. Here, we show that between days 12 and 13 of in ovo development, transient experimentally increased activity of the sonic hedgehog pathway in the chicken embryo, through a single intravenous injection of smoothened agonist (SAG), abolishes the Turing-like chemical patterning of reticulate scales on the ventral footpad and promotes a transition to mechanical labyrinthine skin folding. Using in situ hybridization, nanoindentation and labelling of proliferating cells, we confirm that skin surface folding is associated with the loss of signalling placode pre-patterning as well as increased epidermal growth and stiffness. Using additional in ovo hydrocortisone treatments, we also demonstrate that experimentally induced hyper-keratinization of the skin mechanically restricts SAG-induced folding. Finally, we verify our experimental findings with mechanical growth simulations built from volumetric light sheet fluorescence microscopy data. Overall, we reveal that pharmacological perturbation of the underlying gene regulatory network can abolish chemical skin appendage patterning and replace it with self-organized mechanical folding.

加剧的超音刺猬信号促进了鸡网状鳞片的化学预模式向机械皮肤折叠的转变。
许多自组织胚胎模式的例子可以归因于化学介导的系统,包括相互作用的形态因子。然而,机械模式也有助于生物形式的出现。例如,各种研究表明,不同的图案产生于与软材料生长受限相关的弹性不稳定性,这些弹性不稳定性会产生皱纹、折痕和褶皱。在这里,我们发现在卵细胞发育的第12天到第13天之间,通过单次静脉注射平滑激动剂(SAG),鸡胚胎中声音刺猬通路的活性短暂增加,消除了腹侧足垫网状鳞的图灵样化学图案,促进了向机械迷宫式皮肤折叠的过渡。通过原位杂交、纳米压痕和增殖细胞的标记,我们证实皮肤表面折叠与信号载体预模式的缺失以及表皮生长和硬度的增加有关。使用额外的氢化可的松治疗,我们还证明了实验诱导的皮肤过度角化在机械上限制了sag诱导的折叠。最后,我们用基于体积光片荧光显微镜数据的机械生长模拟验证了我们的实验结果。总的来说,我们揭示了潜在基因调控网络的药理学扰动可以废除化学皮肤附属物模式,取而代之的是自组织机械折叠。
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来源期刊
Open Biology
Open Biology BIOCHEMISTRY & MOLECULAR BIOLOGY-
CiteScore
10.00
自引率
1.70%
发文量
136
审稿时长
6-12 weeks
期刊介绍: Open Biology is an online journal that welcomes original, high impact research in cell and developmental biology, molecular and structural biology, biochemistry, neuroscience, immunology, microbiology and genetics.
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