相关实验视频
Updated: May 16, 2025

11:14
Modeling Paracrine Noncanonical Wnt Signaling In Vitro
Published on: December 10, 2021
1.5K
Wnt信号恢复了Hydra中再生潜力的进化损失
Sergio E Campos1,2, Sahar Naziri1,3, Jackson Crane1
1Department of Molecular and Cellular Biology, University of California, Davis, Davis, CA 95616, United States.
bioRxiv : the preprint server for biology
|April 1, 2025
概括
大多数Hydra物种可以再生四肢,但Hydra oligactis不能再生它的脚. 在H. oligactis中激活Wnt信号,挽救了脚的再生,揭示了关键的分子机制.
科学领域:
- 比较生物学是比较生物学.
- 发育生物学是发展生物学.
- 进化生物学是进化的生物学.
背景情况:
- 动物的再生有很大的差异,即使在密切相关的物种中也是如此.
- 水属表现出多样化的再生能力,一些物种无法再生特定的身体部位,如脚.
研究的目的:
- 研究Hydra oligactis.脚再生失败背后的分子机制.
- 确定关键的信号通路和涉及脚部再生的遗传调节者.
主要方法:
- 在Hydra属中对再生的比较分析.
- 在Hydra oligactis中进行头部和脚部再生的转录概况.
- 功能性测试涉及Wnt信号激动剂.
主要成果:
- 在其一般的伤害反应中,Hydra oligactis缺乏Wnt信号激活,与Hydra vulgaris不同.
- 在H. oligactis中,暂时Wnt激动剂治疗成功诱导了足部再生.
- 转录概况确定了dlx2作为足部再生的潜在高层调节器,依赖于Wnt信号.
结论:
- 缺少Wnt信号是Hydra oligactis无法再生脚的关键因素.
- Wnt信号激活可以拯救H. oligactis的足部再生,突出其至关重要的作用.
- 这项研究为了解再生的演变及其在相关物种中的丧失提供了一个框架.
相关概念视频
Canonical Wnt Signaling Pathway
8.6K
The gene encoding the main signaling molecules of the Wnt signaling pathways (the Wnt proteins) was discovered almost four decades ago by Nüsslein-Volhard and Wieschaus. They identified and originally named the gene "wingless" (wg) after a phenotype discovered during their landmark genetic screen in Drosophila for body pattern defects. At around the same time, another researcher named Harold Varmus found that a murine tumor virus activates the mammalian wg homolog, Int-1, which...
8.6K
Non-Canonical Wnt Signaling Pathways
7.2K
Wnt is a zygotic effect gene that is expressed during very early embryonic development. It regulates various processes in animals starting from early development through the adult stage, such as organogenesis in the embryo and maintenance of neuronal and blood stem cells. Wnt proteins can induce a wide variety of intracellular pathways depending upon the specific abilities of different Wnt ligands to form a complex with shared and cognate receptors in the presence of different co-receptors. The...
7.2K
Whole Body Regeneration
3.3K
Regeneration is the process of restoring injured or lost tissues, organs, or body parts. While simpler organisms generally show greater ability to regenerate their whole body, few complex animals show similarly exceptional regeneration. For example, planarian flatworms have a unique regenerative potential making them a popular study organism among biologists to understand the mechanisms of whole body regeneration. Other organisms, such as hydra, also show extreme regeneration potential;...
3.3K
Role Of Notch Signalling In Intestinal Stem Cell Renewal
2.0K
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...
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...
2.0K
Overview of Regeneration and Repair
3.9K
Regeneration and repair processes are critical in healing damages caused by injury, disease, and aging. In regeneration, the damaged tissue is entirely replaced with new growth that restores the original architecture and function. In contrast, tissue repair usually results in a fixed tissue architecture involving scar formation. Scars generally do not reestablish tissue function and may also exhibit structural abnormalities at the injury site.
Regeneration
All animals have varying degrees of...
Regeneration
All animals have varying degrees of...
3.9K
Role of Ephrin-Eph Signalling in Intestinal Stem Cell Renewal
2.2K
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.
2.2K

