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遗传干扰 HvNotch 为 Notch 信号通路在水螅发育模式形成中的作用提供了新的见解。

Genetic interference with HvNotch provides new insights into the role of the Notch-signalling pathway for developmental pattern formation in Hydra.

机构信息

Biocenter, Ludwig-Maximilians-University Munich, Großhaderner Str. 2, 82152, Planegg-Martinsried, Germany.

Institute of Applied Mathematics, Heidelberg University, Im Neuenheimer Feld 205, 69120, Heidelberg, Germany.

出版信息

Sci Rep. 2024 Apr 12;14(1):8553. doi: 10.1038/s41598-024-58837-7.

Abstract

The Notch-signalling pathway plays an important role in pattern formation in Hydra. Using pharmacological Notch inhibitors (DAPT and SAHM1), it has been demonstrated that HvNotch is required for head regeneration and tentacle patterning in Hydra. HvNotch is also involved in establishing the parent-bud boundary and instructing buds to develop feet and detach from the parent. To further investigate the functions of HvNotch, we successfully constructed NICD (HvNotch intracellular domain)-overexpressing and HvNotch-knockdown transgenic Hydra strains. NICD-overexpressing transgenic Hydra showed a pronounced inhibition on the expression of predicted HvNotch-target genes, suggesting a dominant negative effect of ectopic NICD. This resulted in a "Y-shaped" phenotype, which arises from the parent-bud boundary defect seen in polyps treated with DAPT. Additionally, "multiple heads", "two-headed" and "ectopic tentacles" phenotypes were observed. The HvNotch-knockdown transgenic Hydra with reduced expression of HvNotch exhibited similar, but not identical phenotypes, with the addition of a "two feet" phenotype. Furthermore, we observed regeneration defects in both, overexpression and knockdown strains. We integrated these findings into a mathematical model based on long-range gradients of signalling molecules underlying sharply defined positions of HvNotch-signalling cells at the Hydra tentacle and bud boundaries.

摘要

Notch 信号通路在水螅的模式形成中起着重要作用。使用药理学 Notch 抑制剂(DAPT 和 SAHM1),已经证明 HvNotch 是水螅头部再生和触手模式形成所必需的。HvNotch 还参与建立亲-芽边界,并指示芽发育出脚并与亲本分离。为了进一步研究 HvNotch 的功能,我们成功构建了 NICD(HvNotch 细胞内结构域)过表达和 HvNotch 敲低转基因水螅品系。NICD 过表达转基因水螅显示出对预测的 HvNotch 靶基因表达的明显抑制,表明异位 NICD 的显性负效应。这导致了“Y 形”表型,这是由于 DAPT 处理的息肉中亲-芽边界缺陷引起的。此外,还观察到“多头”、“双头”和“异位触手”表型。表达水平降低的 HvNotch 敲低转基因水螅表现出相似但不完全相同的表型,并且出现了“两个脚”的表型。此外,我们在过表达和敲低株中都观察到了再生缺陷。我们将这些发现整合到一个基于信号分子长程梯度的数学模型中,该模型是基于水螅触手和芽边界处 HvNotch 信号细胞的明确定义位置。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/04b7/11014954/b5789ad9b924/41598_2024_58837_Fig1_HTML.jpg

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