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相关概念视频

Pleiotropy01:33

Pleiotropy

Pleiotropy is the phenomenon in which a single gene impacts multiple, seemingly unrelated phenotypic traits. For example, defects in the SOX10 gene cause Waardenburg Syndrome Type 4, or WS4, which can cause defects in pigmentation, hearing impairments, and an absence of intestinal contractions necessary for elimination. This diversity of phenotypes results from the expression pattern of SOX10 in early embryonic and fetal development. SOX10 is found in neural crest cells that form melanocytes,...
Notch Signaling Pathway03:14

Notch Signaling Pathway

The Notch signaling pathway is a major intracellular signaling pathway that is highly conserved over a broad spectrum of metazoan species. It stands unique from other intracellular signaling mechanisms in animals because notch protein itself acts as the receptor as well as the primary signaling molecule.
The Notch gene came into the limelight in 1914 after the discovery that its mutation in Drosophila melanogaster leads to a serrated (or "notched") wing margin phenotype. It was not until 1985...
Hedgehog Signaling Pathway02:33

Hedgehog Signaling Pathway

The Hedgehog gene (Hh) was first discovered due to its control of the growth of disorganized, hair-like bristles phenotype in Drosophila, much like hedgehog spines. Hh plays a crucial role in the development of organs and the maintenance of homeostasis in both invertebrates and vertebrates. However, while Drosophila has only one Hh protein, mammals have multiple functional Hedgehog proteins - Sonic (Shh), Desert (Dhh), and Indian Hedgehog (Ihh). All of these homologous proteins have adapted to...
Hedgehog Signaling Pathway02:33

Hedgehog Signaling Pathway

The Hedgehog gene (Hh) was first discovered due to its control of the growth of disorganized, hair-like bristles phenotype in Drosophila, much like hedgehog spines. Hh plays a crucial role in the development of organs and the maintenance of homeostasis in both invertebrates and vertebrates. However, while Drosophila has only one Hh protein, mammals have multiple functional Hedgehog proteins - Sonic (Shh), Desert (Dhh), and Indian Hedgehog (Ihh). All of these homologous proteins have adapted to...
Role of Ephrin-Eph Signalling in Intestinal Stem Cell Renewal01:22

Role of Ephrin-Eph Signalling in Intestinal Stem Cell Renewal

Erythropoietin-producing hepatocellular carcinoma receptor (Eph) and its ligand, Eph receptor-interacting protein (Ephrin) were first discovered in the human carcinoma cell line, hence the name. Ephrin-Eph interaction guides cells to reach their appropriate location in adult tissues. They also play an essential role in the immune system by helping in immune cell migration, adhesion, and activation. Based on their structure and function, Eph is divided into two classes — EphA and EphB.
Role Of Notch Signalling In Intestinal Stem Cell Renewal01:12

Role Of Notch Signalling In Intestinal Stem Cell Renewal

Notch signaling was first discovered in Drosophila melanogaster, where it is involved in cell lineage differentiation. Notch signaling regulates the maintenance and differentiation of intestinal stem cells or ISCs by controlling the expression of atonal homolog 1 or Atoh1. Atoh1 directs cells to differentiate into secretory cells.
Direct cell-to-cell contact is needed for the activation of Notch signaling. The signal is initiated when a notch ligand binds to a receptor on an adjacent cell, also...

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相关实验视频

Updated: May 11, 2026

Using Confocal Analysis of Xenopus laevis to Investigate Modulators of Wnt and Shh Morphogen Gradients
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Using Confocal Analysis of Xenopus laevis to Investigate Modulators of Wnt and Shh Morphogen Gradients

Published on: December 14, 2015

滑滑的突变体显示了Shh和Ihh信号的冗余作用,包括鼠标节点对L/R对称性的调节.

X M Zhang1, M Ramalho-Santos, A P McMahon

  • 1Department of Molecular and Cellular Biology, The Biolabs, Harvard University, 16 Divinity Avenue, Cambridge, MA 02138, USA.

Cell
|August 24, 2001
PubMed
概括

滑化 (Smo) 对于小鼠胚胎中的刺信号至关重要,影响从器官生成到左右不对称的发育. 它的缺失导致严重的发育缺陷,包括心脏和肠道异常和循环病.

科学领域:

  • 发育生物学 发展生物学
  • 分子遗传学 分子遗传学
  • 胚胎学 胚胎学

背景情况:

  • 滑化 (Smo) 是 Hedgehog (Hh) 信号中的一个关键的多通膜蛋白,通过Drosophila遗传学建立.
  • 刺信号通路,包括Sonic刺 (Shh) 和印度刺 (Ihh),在胚胎发育中起着至关重要的作用.

研究的目的:

  • 研究Smo在早期小鼠胚胎中调解SHH和IHH信号的作用.
  • 阐明信号在左/右 (L/R) 非对称性及其下游路径中的参与.
  • 为了确定在硬质瘤和心脏发育中的刺信号的必要性.

主要方法:

  • 对Smo和Shh/Ihh复合突变小鼠胚胎进行比较分析.
  • 胚胎发育的表型检查,包括器官生成和L / R网站.
  • 研究与L/R不对称性相关的基因表达,如Gdf1.1.

主要成果:

  • 在小鼠胚胎中,Smo对Ptc1具有表皮性作用,调解Shh和Ihh信号.
  • 斯莫和Shh/Ihh复合突变体表现出相同的严重表型:无法转变,停止索米特阶段,小心管,开放的肠道和循环.
  • 节点中的刺信号是Gdf1激活和左侧决定因素诱导所需的,这对于L/R不对称性至关重要.

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Dissection of the Auditory Bulla in Postnatal Mice: Isolation of the Middle Ear Bones and Histological Analysis

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Quantitative PCR-based Assay to Measure Sonic Hedgehog Signaling in Cellular Model of Ciliogenesis

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  • 刺信号绝对是硬质瘤发育所必需的,并在心脏形态发生过程中发挥作用.
  • 结论:

    • 在早期小鼠胚胎发生过程中,光滑对于调解Shh和Ihh信号至关重要.
    • 刺信号对于通过涉及Gdf1.1.的途径建立左/右不对称性至关重要.
    • 刺信号的破坏导致轴旋转,心脏发育和肠道关闭的严重缺陷.